334 resultados para Silanes oligomerization
Resumo:
Due to the overwhelming burden of colorectal cancer (CRC), great effort has been placed on identifying genetic mutations that contribute to disease development and progression. One of the most studied polymorphisms that could potentially increase susceptibility to CRC involves the nucleotide-binding and oligomerization-domain containing 2 (NOD2) gene. There is growing evidence that the biological activity of NOD2 is far greater than previously thought and a link with intestinal microbiota and mucosal immunity is increasingly sought after. In fact, microbial composition may be an important contributor not only to inflammatory bowel diseases (IBD) but also to CRC. Recent studies have showed that deficient NOD2 function confers a communicable risk of colitis and CRC. Despite the evidence from experimental models, population-based studies that tried to link certain NOD2 polymorphisms and an increase in CRC risk have been described as conflicting. Significant geographic discrepancies in the frequency of such polymorphisms and different interpretations of the results may have limited the conclusions of those studies. Since being first associated to IBD and CRC, our understanding of the role of this gene has come a long way, and it is tempting to postulate that it may contribute to identify individuals with susceptible genetic background that may benefit from early CRC screening programs or in predicting response to current therapeutic tools. The aim of this review is to clarify the status quo of NOD2 mutations as genetic risk factors to chronic inflammation and ultimately to CRC. The use of NOD2 as a predictor of certain phenotypic characteristics of the disease will be analyzed as well.
Resumo:
Actinoporins are pore-forming toxins from sea anemones. Upon interaction with sphingomyelin-containing bilayers, they become integral oligomeric membrane structures that form a pore. Sticholysin II from Stichodactyla helianthus contains five tryptophans located at strategic positions; its role has now been studied using different mutants. Results show that W43 and W115 play a eterminant role in maintaining the high thermostability of the protein, while W146 provides specific interactions for protomer−protomer assembly. W110 and W114 sustain the hydrophobic effect, which is one of the major driving forces for membrane binding in the presence of Chol. However, in its absence, additional interactions with sphingomyelin are required. These conclusions were confirmed with two sphingomyelin analogues, one of which had impaired hydrogen bonding properties. The results obtained support actinoporins’ Trp residues playing a major role in membrane recognition and binding, but their residues have an only minor influence on the diffusion and oligomerization steps needed to assemble a functional pore.
Resumo:
Este documento corresponde al ejercicio preliminar de la línea de investigación en dinámicas territoriales, y es uno de los artículos científicos propuestos como resultado del Proyecto de investigación “Inteligencia territorial para la recuperación de las dinámicas socio-productivas de la subregión de Lengupá”. Por lo tanto, presenta los resultados de la fase exploratoria, correspondiente al diagnóstico regional en el marco de los enfoques teóricos desde los cuales la región es estudiada. A continuación, se presentarán los dos pilares fundamentales de ésta investigación: el territorio y la Inteligencia Territorial. En el caso del territorio, este proceso de investigación parte de un diferenciación previa respecto al lugar y al espacio, debido a que en el territorio se dan relaciones históricas y de poder en una relación dialéctica, entre los atributos ecológicos y culturales, teniendo en cuenta el planteamiento de Sasquet, (2015) cuando menciona que para comprender el territorio es necesario comprender el espacio geográfico, territorialidad humana, en escala subregional y a través del tiempo.