979 resultados para 1-lauroyl-2-(12-(S-methyldithio)docecanoyl)-sn-glycero-3-phosphocholine


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The Tat-responsive region (TAR) element is a critical RNA regulatory element in the human immunodeficiency virus (HIV) long terminal repeat, which is required for activation of gene expression by the transactivator protein Tat. Recently, we demonstrated by gel-retardation analysis that RNA polymerase II binds to TAR RNA and that Tat prevents this binding even when Tat does not bind to TAR RNA. These results suggested that direct interactions between Tat and RNA polymerase II may prevent RNA polymerase II pausing and lead to Tat-mediated increases in transcriptional elongation. To test this possibility, we performed protein interaction studies with RNA polymerase II and both the HIV-1 and the closely related HIV-2 Tat protein. These studies indicated that both the HIV-1 and HIV-2 Tat proteins could specifically interact with RNA polymerase II. Mutagenesis of both HIV-1 and HIV-2 Tat demonstrated that the basic domains of both the HIV-1 and HIV-2 Tat proteins were required for this interaction. Furthermore, "far Western" analysis suggested that the largest subunit of RNA polymerase II was the site for interaction with Tat. The interactions between Tat and RNA polymerase II were of similar magnitude to those detected between RNA polymerase II and the cellular transcription factor RAP30, which stably associates with RNA polymerase II during transcriptional elongation. These studies are consistent with the model that RNA polymerase II is a cellular target for Tat resulting in Tat-mediated increases in transcriptional elongation from the HIV long terminal repeat.

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The insertion of the blood retrotransposon into the untranslated region of exon 7 of the sn-glycerol-3-phosphate dehydrogenase-encoding gene (Gpdh) in Drosophila melanogaster induces a GPDH isozyme-GPDH-4-and alters the pattern of expression of the three normal isozymes-GPDH-1 to GPDH-3. The process of transcript terminus formation inside the retrotransposon insertion reduces the level of the Gpdh transcript that contains exon 8 and increases the level of the transcript that contains exons 1-7. The induced GPDH-4 isozyme is a translation product of the three transcripts that contain fragments of the blood retrotransposon. The mechanism of mutagenesis by the blood insertion is postulated to involve the pause or termination of transcription within the blood sequence, which in turn is caused by the interference of a DNA-binding protein with the RNA polymerase. Thus, we show the formation of a new functional GPDH protein by the insertion of a transposable element and discuss the evolutionary significance of this phenomenon.

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A nervous system-specific glycoprotein antigen from adult Drosophila heads, designated Nervana (Nrv), has been purified on the basis of reactivity of its carbohydrate epitope(s) with anti-horseradish peroxidase (HRP) antibodies that are specific markers for Drosophila neurons. Anti-Nrv monoclonal antibodies (mAbs), specific for the protein moiety of Nrv, were used to screen a Drosophila embryo cDNA expression library. Three cDNA clones (designated Nrv1, Nrv2.1, and Nrv2.2) were isolated that code for proteins recognized by anti-Nrv mAbs on Western blots. DNA sequencing and Southern blot analyses established that the cDNA clones are derived from two different genes. In situ hybridization to Drosophila polytene chromosomes showed that the cDNA clones map to the third chromosome near 92C-D. Nrv1 and Nrv2.1/2.2 have open reading frames of 309 and 322/323 amino acids, respectively, and they are 43.4% identical at the amino acid level. The proteins deduced from these clones exhibit significant homology in both primary sequence and predicted topology to the beta subunit of Na+,K(+)-ATPase. Immunoaffinity-purified Nrv is associated with a protein (M(r) 100,000) recognized on Western blots by anti-ATPase alpha-subunit mAb. Our results suggest that the Drosophila nervous system-specific antigens Nrv1 and -2 are neuronal forms of the beta subunit of Na+,K(+)-ATPase.

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La enfermedad cardiovascular sigue siendo la principal causa de morbilidad y mortalidad a nivel mundial en países desarrollados, fundamentalmente en pacientes con DM tipo 2, en algunas poblaciones puede representar el 50% o más de las muertes por diabetes (Joseph and Golden, 2014). Esto se debe en gran medida a factores ya conocidos como la predisposición genética, la aterogénesis acelerada, la inflamación crónica, la isquemia silente y la presencia de patologías co-existentes como la hipertensión o la dislipidemia. La diabetes es sin duda alguna, uno de los problemas de salud más graves del siglo XXI y actualmente en España, la prevalencia nacional es de 10,83% (FDI 2013). Las células progenitoras endoteliales juegan un papel clave en los procesos de reparación endotelial. En los pacientes con DM tipo 2 y enfermedad cardiovascular, se sabe que la funcionalidad de las EPCs es deficiente, aunque el mecanismo exacto de disfunción aún es incierto. Además, está bien descrito que en la evolución natural de los pacientes con DM tipo 2 presentan un mayor número de complicaciones y con mayor frecuencia estos pacientes estarán abocados a procedimientos de revascularización. Múltiples estudios (Sidhu and Boden, 2015; Verma et al., 2013) que han señalado la importancia de una adecuada terapia de reparación endotelial (terapia con EPCs), que ayudaría a disminuir las alteraciones en los procesos de reendotelización en los pacientes con DM tipo 2 y enfermedad cardiovascular, y por consiguiente disminuiría la aparición de la enfermedad cardiovascular (ECV)...

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El document és l'annex de la pràctica 12. Coneixement de la realitat en Educació Infantil.

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Wet unsupported and supported 1,1′-binaphthalene-2,2′-diamine (BINAM) derived prolinamides are efficient organocatalysts under solvent-free conditions at room temperature to perform the synthesis of chiral tacrine analogues in good yields (up to 93%) and excellent enantioselectivies (up to 96%). The Friedländer reaction involved in this process takes place with several cyclohexanone derivatives and 2-aminoaromatic aldehydes, and it is compatible with the presence of either electron-withdrawing or electron-donating groups at the aromatic ring of the 2-aminoaryl aldehyde derivatives used as electrophiles. The reaction can be extended to cyclopentanone derivatives, affording a regioisomeric but separable mixture of products. The use of the wet silica gel supported organocatalyst, under solvent-free conditions, for this process led to the expected product (up to 87% enantiomeric excess), with its reuse being possible at least up to five times.

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Correspondence describing a distemper he was suffering from and requesting Winthrop send him medicine and instructions for taking it.

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Correspondence regarding an illness Bliss was suffering; he writes that the medicines Winthrop had given him were ineffective and he has been suffering fits. The letter, which was finished in an unknown hand, reports further symptoms had developed, including headache and blindness, and requests Winthrop again send instructions for taking the medicine he originally sent Bliss, and any other medicine he would recommend.

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Correspondence regarding a vomit Winthrop prescribed to Clark's wife, and the lack of improvement of her symptoms, which she believed were possibly caused by chest worms.

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Correspondence requesting medicines from Winthrop for his stomach ailment, and for a neighbor who was suffering from edema.

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Correspondence seeking advice from Winthrop about an illness that afflicted his children's heads and caused hair loss, and his sister's case of worms.