20 resultados para Pmca
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As the atmospheric levels of CO2 rise from human activity, the carbonic acid levels of the ocean increase, causing ocean acidification. This increase in acidity breaks down the calcified bodies that many marine organisms depend upon. Upwelling regions such as Monterey Bay in California have pH levels that are not expected to reach the open ocean for a few decades. This study reviews one of the common intertidal animals of the California coast, the Owl Limpet Lottia gigantea, and its genetic variation of the plasma membrane Ca2+ ATPase (PMCA) in relation to the acidity of its environment. The PMCA protein functions in the calcification process of many organisms. Specifically in limpets, this gene functions to form its protective shell. Single-nucleotide polymorphisms (SNPs) were found among five sections of the gene to determine variation between the acidic environment population in Monterey, California and the non-acidic environment population in Santa Barbara, California. While some variation was determined, the Monterey Bay and Santa Barbara Lottia gigantea populations are not significantly distinct at the PMCA gene. Sections B, C, and D were found to be linked. Only one location in Section B was found to have an amino acid change within an exon. Section A has the strongest connection to the sampling location. Monterey individuals were seen to be more genetically recognizable, while Santa Barbara individuals showed slightly more variation. Understanding the trends of ocean acidification, upwelling region activities, and population genetics will assist in determining how the ocean environment will behave in the future.
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Fasciolosis is a parasitic infection by the liver fluke Fasciola hepatica, which costs the global agricultural community over US $2 billion per year. Its prevalence is rising due to factors such as climate change and drug resistance. ATP-dependent membrane transporters are considered good potential drug targets as they are essential for cellular processes and are in an exposed, accessible position in the cell. Immunolocalisation studies demonstrated that a plasma membrane calcium ATPase (PMCA) was localised to the parenchymal tissue in F. hepatica. The coding sequence for a F. hepatica PMCA (FhPMCA) has been obtained. This sequence encodes a 1,163 amino acid protein which contains motifs which are commonly conserved in PMCAs. Molecular modelling predicted that the protein has 10 transmembrane segments which include a potential calcium ion binding site and phosphorylation motif. FhPMCA interacts with the calmodulin-like protein FhCaM1, but not the related proteins FhCaM2 or FhCaM3, in a calcium-ion dependent manner. This interaction occurs through a region in the C-terminal region of FhPMCA which most likely adopts an a-helical conformation. When FhPMCA was heterologously expressed in a budding yeast strain deleted for its PMCA (Pmc1p), it restored viability. Microsomes prepared from these yeast cells had calcium ion stimulated ATPase activity which was inhibited by the known PMCA inhibitors, bisphenol and eosin. The potential of FhPMCA as a new drug target is discussed.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Aspergillus fumigatus is a primary and opportunistic pathogen, as well as a major allergen, of mammals. The Ca+2-calcineurin pathway affects virulence, morphogenesis and antifungal drug action in A. fumigatus. Here, we investigated three components of the A. fumigatus Ca+2-calcineurin pathway, pmcA,-B, and -C, which encode calcium transporters. We demonstrated that CrzA can directly control the mRNA accumulation of the pmcA-C genes by binding to their promoter regions. CrzA-binding experiments suggested that the 5'-CACAGCCAC-3' and 5'-CCCTGCCCC-3' sequences upstream of pmcA and pmcC genes, respectively, are possible calcineurin-dependent response elements (CDREs)-like consensus motifs. Null mutants were constructed for pmcA and -beta and a conditional mutant for pmcC demonstrating pmcC is an essential gene. The Delta pmcA and Delta pmcB mutants were more sensitive to calcium and resistant to manganese and cyclosporin was able to modulate the sensitivity or resistance of these mutants to these salts, supporting the interaction between calcineurin and the function of these transporters. The pmcA-C genes have decreased mRNA abundance into the alveoli in the Delta calA and Delta crzA mutant strains. However, only the A. fumigatus Delta pmcA was avirulent in the murine model of invasive pulmonary aspergillosis.
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Le encefalopatie spongiformi trasmissibili (EST), o malattie da prioni, sono malattie neurodegenerative che colpiscono l'uomo e gli animali. Le più note tra le EST animali sono la scrapie della pecora e della capra, l’encefalopatia spongiforme bovina (BSE), la Sindrome del dimagrimento cronico (CWD) dei cervidi. Negli uomini ricordiamo la malattia di Creutzfeldt-Jakob (CJD) nelle sue diverse forme (sporadica, genetica, iatrogenica e variante). La dimostrazione che la variante della CJD (vCJD) sia causata dallo stesso agente eziologico della BSE, ha evidenziato il potenziale zoonotico di queste malattie. Le EST sono caratterizzate da tempi di incubazione estremamente lunghi ed esito invariabilmente fatale. Il momento patogenetico centrale comune a tutte queste malattie è rappresentato dalla modificazione conformazionale di una proteina cellulare denominata PrPC (proteina prionica cellulare) in una isoforma patologica denominata PrPSc, insolubile e caratterizzata da una parziale resistenza alle proteasi, che tende a depositarsi sotto forma di fibrille amiloidee nel SNC dei soggetti colpiti. La suscettibilità degli ovini alla scrapie è largamente influenzata dal genotipo del gene dell’ospite che codifica per la PrP (PRNP), e più precisamente da tre polimorfismi presenti ai codoni 136, 154 e 171. Questi si combinano in cinque principali alleli, ARQ, VRQ, AHQ, ARH e ARR, correlati a differenti gradi di suscettibilità alla malattia. Risultati ottenuti da un precedente studio d’infezione sperimentale di ovini di razza Sarda con scrapie classica (Vaccari G et al 2007), hanno suggeriscono l’ordine di suscettibilità ARQ>AHQ>ARH. L’allele ARR, è risultato invece associato ai più alti livelli di protezione dalla malattia. Dallo stesso studio di trasmissione sperimentale e da uno studio epidemiologico di tipo caso-controllo, è inoltre emerso che nella razza Sarda, ovini con l’allele ARQ, con sostituzione amminoacidica al codone 137 Metionina (M)/Treonina (T) (AT137RQ) o al 176 Asparagina (N)/Lisina (K) (ARQK176) in eterozigosi sono protetti dalla scrapie. Inoltre studi di trasmissione sperimentale della BSE in ovini della stessa razza con tre differenti genotipi (ARQ/ARQ, ARQ/ARR e ARR/ARR), hanno dimostrato come la BSE abbia un targeting genetico molto simile a quello della scrapie, evidenziando il genotipo ARQ/ARQ come il più suscettibile. L’obbiettivo della seguente tesi è stato quello di verificare se fosse possibile riprodurre in vitro la differente suscettibilità genetica degli ovini alle EST evidenziata in vivo, utilizzando il PMCA (Protein Misfolding Cyclic Amplification), la metodica ad oggi più promettente e di cui è stata dimostrata la capacità di riprodurre in vitro diverse proprietà biologiche dei prioni. La tecnica, attraverso cicli ripetuti di sonicazione/incubazione, permette la conversione in vitro della PrPC presente in un omogenato cerebrale (substrato), da parte di una quantità minima di PrPSc (inoculo) che funge da “innesco” della reazione. Si è voluto inoltre utilizzare il PMCA per indagare il livello di protezione in omozigosi di alleli rari per i quali, in vivo, si avevano evidenze di protezione dalla scrapie solo in eterozigosi, e per studiare la suscettibilità degli ovini alla BSE adattata in questa specie. È stata quindi testata in PMCA la capacità diversi substrati ovini recanti differenti genotipi, di amplificare la PrPSc dello stesso isolato di scrapie classica impiegato nel precedente studio in vivo o di un inoculo di BSE bovina. Inoltre sono stati saggiati in vitro due inoculi di BSE costituiti da omogenato cerebrale di due ovini sperimentalmente infettati con BSE (BSE ovina) e recanti due differenti genotipi (ARQ/ARQ e ARR/ARR). Per poter descrivere quantitativamente il grado di correlazione osservato i risultati ottenuti in vitro e i quelli riscontrati dallo studio di sperimentazione con scrapie, espressi rispettivamente come fattori di amplificazione e tempi d’incubazione registrati in vivo, sono stati analizzati con un modello di regressione lineare. Per quanto riguarda la scrapie, i risultati ottenuti hanno evidenziato come i genotipi associati in vivo a suscettibilità (ARQ/ARQ, ARQ/AHQ and AHQ/ARH) siano anche quelli in grado di sostenere in PMCA l’amplificazione della PrPSc, e come quelli associati a resistenza (ARQ/ARR and ARR/ARR) non mostrino invece nessuna capacità di conversione. Dall’analisi di regressione lineare è inoltre emerso come l’efficienza di amplificazione in vitro dei differenti genotipi testati sia inversamente proporzionale ai tempi d’incubazione registrati in vivo. Inoltre nessuna amplificazione è stata riscontrata utilizzando il substrato con genotipo raro ARQK176/ARQK176 suggerendo come anche questo possa essere associato a resistenza, almeno nei confronti dell’isolato di scrapie classica utilizzato. Utilizzando come inoculo in PMCA l’isolato di BSE bovina, è stato possibile riscontrare, nei tre genotipi analizzati (ARQ/ARQ, ARQ/ARR e ARR/ARR) un evidente amplificazione per il solo genotipo ARQ/ARQ, sottolineando anche in questo caso l’esistenza di una correlazione tra suscettibilità riscontrata in vivo e capacità di conversione in PMCA. I tre i substrati analizzati mostrano inoltre una buona efficienza di amplificazione, per altro simile, se si utilizza la PrPSc dell’inoculo di BSE sperimentalemente trasmessa agli ovini. Questi genotipi sembrerebbero dunque ugualmente suscettibili se esposti a BSE adattata alla specie ovina. I risultati di questa tesi indicano dunque una correlazione diretta tra la capacità di conversione della PrPC con il PMCA e la suscettibilità osservata in vivo per i differenti genotipi analizzati. Mostrano inoltre come il PMCA possa essere una valida alternativa agli studi di trasmissione in vivo e un rapido strumento utile non soltanto per testare, ma anche per predire la suscettibilità genetica degli ovini a diversi ceppi di EST, rappresentando un valido aiuto per l’individuazione di ulteriori genotipi resistenti, così da incrementare la variabilità genetica dei piani di selezione attuati per gli ovini per il controllo di queste malattie.
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The calcineurin/nuclear factor of activated T-cell (NFAT) pathway represents a crucial transducer of cellular function. There is increasing evidence placing the sarcolemmal calcium pump, or plasma membrane calcium/calmodulin ATPase pump (PMCA), as a potential modulator of signal transduction pathways. We demonstrate a novel interaction between PMCA and the calcium/calmodulin-dependent phosphatase, calcineurin, in mammalian cells. The interaction domains were located to the catalytic domain of PMCA4b and the catalytic domain of the calcineurin A subunit. Endogenous calcineurin activity, assessed by measuring the transcriptional activity of its best characterized substrate, NFAT, was significantly inhibited by 60% in the presence of ectopic PMCA4b. This inhibition was notably reversed by the co-expression of the PMCA4b interaction domain, demonstrating the functional significance of this interaction. PMCA4b was, however, unable to confer its inhibitory effect in the presence of a calcium/calmodulin-independent constitutively active mutant calcineurin A suggesting a calcium/calmodulin-dependent mechanism. The modulatory function of PMCA4b is further supported by the observation that endogenous calcineurin moves from the cytoplasm to the plasma membrane when PMCA4b is overexpressed. We suggest recruitment by PMCA4b of calcineurin to a low calcium environment as a possible explanation for these findings. In summary, our results offer strong evidence for a novel functional interaction between PMCA and calcineurin, suggesting a role for PMCA as a negative modulator of calcineurin-mediated signaling pathways in mammalian cells. This study reinforces the emerging role of PMCA as a molecular organizer and regulator of signaling transduction pathways.
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Plasma membrane calmodulin-dependent calcium ATPases (PMCAs) are enzymatic systems implicated in the extrusion of calcium from the cell. We and others have previously identified molecular interactions between the cytoplasmic COOH-terminal end of PMCA and PDZ domain-containing proteins. These interactions suggested a new role for PMCA as a modulator of signal transduction pathways. The existence of other intracellular regions in the PMCA molecule prompted us to investigate the possible participation of other domains in interactions with different partner proteins. A two-hybrid screen of a human fetal heart cDNA library, using the region 652-840 of human PMCA4b (located in the catalytic, second intracellular loop) as bait, revealed a novel interaction between PMCA4b and the tumor suppressor RASSF1, a Ras effector protein involved in H-Ras-mediated apoptosis. Immunofluorescence co-localization, immunoprecipitation, and glutathione S-transferase pull-down experiments performed in mammalian cells provided further confirmation of the physical interaction between the two proteins. The interaction domain has been narrowed down to region 74-123 of RASSF1C (144-193 in RASSF1A) and 652-748 of human PMCA4b. The functionality of this interaction was demonstrated by the inhibition of the epidermal growth factor-dependent activation of the Erk pathway when PMCA4b and RASSF1 were co-expressed. This inhibition was abolished by blocking PMCA/RASSSF1 association with an excess of a green fluorescent protein fusion protein containing the region 50-123 of RASSF1C. This work describes a novel protein-protein interaction involving a domain of PMCA other than the COOH terminus. It suggests a function for PMCA4b as an organizer of macromolecular protein complexes, where PMCA4b could recruit diverse proteins through interaction with different domains. Furthermore, the functional association with RASSF1 indicates a role for PMCA4b in the modulation of Ras-mediated signaling.
Peroxynitrite mediates disruption of Ca2+ homeostasis by carbon monoxide via Ca2+ ATPase degradation
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CO stimulates formation of NO and reactive oxygen species which, via peroxynitrite formation, inhibit Ca(2+) extrusion via PMCA, leading to disruption of Ca(2+) signaling. We propose this contributes to the neurological damage associated with CO toxicity.
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This work discourses about the child and adolescent s Guaranty System of Rights (GSR), on the intervention in cases of juvenile domestic sexual violence, in Recife. The course (trajectory) is analyzed, where circulate cases of sexual violence, until its resolution, in (GSR). Actually, the violence represents a serious problem of public health. Was thought about the difficulties and the limits that make GSR become a full field of contradictions and challenges for the effectiveness of the children and adolescents rights. Therefore, it was verified the treatments that are developed by GSR, how this system is structured and articulated and how occurs the resolution of the sexual violence cases against children and adolescents. Proceedings of the quantitative and qualitative research were used, was done observation, directed interview and analysis of documents. Thus, the field research was the visits in these institutions: Restauração Hospital, Police Management of the Child and Adolescent (PMCA) three Guardianship Councils, Dom Helder Camara Center of Studies and Social Action (CENDHEC) and the Tribunal of Childhood and Adolescence. The research subjects were seven professionals of GSR. The theoretical discussion is guided in reflections about the children and youth rights, in the violence theme and in the construction and institutionalization process of GSR. In this experiment, was noticed there are many difficulties for working together the GSR, because many obstacles are found when we call the responsible institutions, besides some violence cases happen again. This system is not totally institutionalized and articulated, faces structural problems, material, poorly qualified professionals, underinvestment, low transfer of public resources, among other difficulties, causing many losses in the implementation of public policies that enforce secured rights by legislation
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Ferrao FM, Lara LS, Axelband F, Dias J, Carmona AK, Reis RI, Costa-Neto CM, Vieyra A, Lowe J. Exposure of luminal membranes of LLC-PK1 cells to ANG II induces dimerization of AT(1)/AT(2) receptors to activate SERCA and to promote Ca2+ mobilization. Am J Physiol Renal Physiol 302: F875-F883, 2012. First published January 4, 2012; doi:10.1152/ajprenal.00381.2011.-ANG II is secreted into the lumens of proximal tubules where it is also synthesized, thus increasing the local concentration of the peptide to levels of potential physiological relevance. In the present work, we studied the effect of ANG II via the luminal membranes of LLC-PK1 cells on Ca2+-ATPase of the sarco(endo) plasmic reticulum (SERCA) and plasma membrane (PMCA). ANG II (at concentrations found in the lumen) stimulated rapid (30 s) and persistent (30 min) SERCA activity by more than 100% and increased Ca2+ mobilization. Pretreatment with ANG II for 30 min enhanced the ANG II-induced Ca2+ spark, demonstrating a positively self-sustained stimulus of Ca2+ mobilization by ANG II. ANG II in the medium facing the luminal side of the cells decreased with time with no formation of metabolites, indicating peptide internalization. ANG II increased heterodimerization of AT(1) and AT(2) receptors by 140%, and either losartan or PD123319 completely blocked the stimulation of SERCA by ANG II. Using the PLC inhibitor U73122, PMA, and calphostin C, it was possible to demonstrate the involvement of a PLC -> DAG(PMA)-> PKC pathway in the stimulation of SERCA by ANG II with no effect on PMCA. We conclude that ANG II triggers SERCA activation via the luminal membrane, increasing the Ca2+ stock in the reticulum to ensure a more efficient subsequent mobilization of Ca2+. This first report on the regulation of SERCA activity by ANG II shows a new mechanism for Ca2+ homeostasis in renal cells and also for regulation of Ca2+-modulated fluid reabsorption in proximal tubules.
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I prioni, privi di acidi nucleici, esistono come ceppi e possono mutare, in particolare quando attraversano una barriera di specie. Numerosi studi convergono sulla conclusione che le caratteristiche ceppo-specifiche siano inscritte nella conformazione della PrPSc, con la variabilità di ceppo associata a varianti conformazionali della PrPSc. In questo studio ci siamo avvalsi del PMCA, tecnica che riproduce in vitro molti aspetti della biologia dei prioni, per mettere a punto condizioni sperimentali di replicazione che permettessero di osservare fenomeni di mutazione e selezione, onde investigare i meccanismi molecolari e di popolazione alla base della mutabilità dei prioni. In condizioni di replicazione eterologa, che mima la trasmissione tra diverse specie, è stato inizialmente possibile identificare un mutante difettivo della scrapie, caratterizzato da una diversa conformazione della PrPSc e capace di replicare in vitro ma non più in vivo. Le condizioni in cui tale mutante è emerso hanno permesso di sviluppare ulteriori ipotesi di lavoro, basate sul concetto della quasi-specie. Impartendo diversi regimi di replicazione e seguendo l’evoluzione di due ceppi, è stato possibile evidenziare fenomeni di mutazione anche in condizioni di replicazione omologa, in assenza di forti pressioni selettive. In entrambi i ceppi sono emerse varianti conformazionali di PrPSc durante passaggi replicativi ad ampia popolazione, mentre le popolazioni sottoposte a ripetuti colli di bottiglia hanno mostrato un rapido declino del tasso di replicazione. Sono stati infine investigati l’efficacia e il potenziale mutageno di molecole anti-prioniche, ottenendo importanti risultati preliminari sull’efficacia di molecole che legano la PrPC. Questi risultati evidenziano come la mutabilità sia una caratteristica intrinseca dei prioni e supportano l’idea che i prioni siano molto variabili, similmente alle quasi-specie virali, e perciò adattabili e proni a fenomeni di mutazione e selezione. Tali conclusioni hanno impatto su problematiche sanitarie quali lo studio del potenziale zoonotico e i fenomeni di farmaco-resistenza dei prioni.
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Calcium (Ca2+) ist ein ubiquitär vorkommendes Signalmolekül, das an der Regulation zahlreicher zellulärer Prozesse, von der Proliferation bis zum programmierten Zelltod, beteiligt ist. Daher müssen die intrazellulären Ca2+-Spiegel streng kontrolliert werden. Veränderungen der Ca2+-Homöostase während der altersassoziierten Neurodegeneration können dazu beitragen, dass Neuronen vulnerabler sind. So wurden erhöhte Ca2+-Konzentrationen in gealterten Neuronen, begleitet von einer erhöhten Vulnerabilität, beobachtet (Hajieva et al., 2009a). Weiterhin wird angenommen, dass der selektive Untergang von dopaminergen Neuronen bei der Parkinson Erkrankung auf eine erhöhte Ca2+-Last zurückzuführen sein könnte, da diese Neuronen einem ständigen Ca2+-Influx,rnaufgrund einer besonderen Isoform (CaV 1.3) spannungsgesteuerter Ca2+-Kanäle des L-Typs, ausgesetzt sind (Chan et al., 2007). Bislang wurden die molekularen Mechanismen, die einem Ca2+-Anstieg zu Grunde liegen und dessen Auswirkung jedoch nicht vollständig aufgeklärt und daher in der vorliegenden Arbeit untersucht. Um Veränderungen der Ca2+-Homöostase während der altersassoziiertenrnNeurodegeneration zu analysieren wurden primäre Mittelhirnzellen aus Rattenembryonen und SH-SY5Y-Neuroblastomazellen mit dem Neurotoxin 1-Methyl-4-Phenyl-Pyridin (MPP+), das bei der Etablierung von Modellen der Parkinson-Erkrankung breite Anwendung findet, behandelt. Veränderungen der intrazellulären Ca2+-Konzentration wurden mit einem auf dem grün fluoreszierenden Protein (GFP)-basierten Ca2+-Indikator,rn„Cameleon cpYC 3.6“ (Nagai et al., 2004), ermittelt. Dabei wurde in dieser Arbeit gezeigt, dass MPP+ die Abregulation der neuronenspezifischen ATP-abhängigen Ca2+-Pumpe der Plasmamembran (PMCA2) induziert, die mit der Ca2+-ATPase des endoplasmatischen Retikulums (SERCA) und dem Na+/Ca2+-Austauscher (NCX) das zelluläre Ca2+-Effluxsystem bildet, was zu einer erhöhten zytosolischen Ca2+-Konzentration führt. Die PMCA2-Abnahme wurde sowohl auf Transkriptionsebene als auch auf Proteinebene demonstriert, während keine signifikanten Veränderungen der SERCA- und NCX-Proteinmengen festgestellt wurden. Als Ursache der Reduktion der PMCA2-Expression wurde eine Abnahme des Transkriptionsfaktors Phospho-CREB ermittelt, dessen Phosphorylierungsstatus abhängig von der Proteinkinase A (PKA) war. Dieser Mechanismus wurde einerseits unter MPP+-Einfluss und andererseits vermittelt durch endogene molekulare Modulatoren gezeigt. Interessanterweise konnten die durch MPP+ induzierte PMCA2-Abregulation und der zytosolische Ca2+-Anstieg durch die Aktivierung der PKA verhindert werden. Parallel dazu wurde eine MPP+-abhängige verringerte mitochondriale Ca2+-Konzentration nachgewiesen, welche mit einer Abnahme des mitochondrialen Membranpotentials korrelierte. Darüber hinaus kam es als Folge der PMCA2-Abnahme zu einem verminderten neuronalen Überleben.rnVeränderungen der Ca2+-Homöostase wurden auch während der normalen Alterung inrnprimären Fibroblasten und bei Mäusen nachgewiesen. Dabei wurden verringerte PMCA und SERCA-Proteinmengen in gealterten Fibroblasten, einhergehend mit einem Anstieg der zytosolischen Ca2+-Konzentration demonstriert. Weiterhin wurden verringerte PMCA2-Proteinmengen im Mittelhirn von gealterten Mäusen (C57B/6) detektiert.rnDer zelluläre Ca2+-Efflux ist somit sowohl im Zuge der physiologischen Alterung als auch in einem altersbezogenen Krankheitsmodell beeinträchtigt, was das neuronale Überleben beeinflussen kann. In zukünftige Studien soll aufgeklärt werden, welche Auswirkungen einer PMCA2-Reduktion genau zu dem Verlust von Neuronen führen bzw. ob durch eine PMCA2-Überexpression neurodegenerative Prozesse verhindert werden können.
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The morphological and functional unit of all the living organisms is the cell. The transmembrane proteins, localized in the plasma membrane of cells, play a key role in the survival of the cells themselves. These proteins perform a variety of different tasks, for example the control of the homeostasis. In order to control the homeostasis, these proteins have to regulate the concentration of chemical elements, like ions, inside and outside the cell. These regulations are fundamental for the survival of the cell and to understand them we need to understand how transmembrane proteins work. Two of the most important categories of transmembrane proteins are ion channels and transporter proteins. The ion channels have been depth studied at the single molecule level since late 1970s with the development of patch-clamp technique. It is not possible to apply this technique to study the transporter proteins so a new technique is under development in order to investigate the behavior of transporter proteins at the single molecule level. This thesis describes the development of a nanoscale single liposome assay for functional studies of transporter proteins based on quantitative fluorescence microscopy in a highly-parallel manner and in real time. The transporter of interest is the prokaryotic transporter Listeria Monocytogenes Ca2+-ATPase1 (LMCA1), a structural analogue of the eukaryotic calcium pumps SERCA and PMCA. This technique will allow the characterization of LMCA1 functionality at the single molecule level. Three systematically characterized fluorescent sensors were tested at the single liposome scale in order to investigate if their properties are suitable to study the function of the transporter of interest. Further studies will be needed in order to characterize the selected calcium sensor and pH sensor both implemented together in single liposomes and in presence of the reconstituted protein LMCA1.