Comparative modeling studies of rat amiloride-sensitive cation channel 1, neuronal isoform b

Nighat Noureen, Raisa Bano, H. Rashid
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Abstract

Acid-sensing ion channels (ASICs) of the epithelial sodium channel/degenerin (ENaC/DEG) gene family are protongated cation channels. ASICs have two transmembrane segments which are hydrophobic. Various proton-gated ion channels suggest that, ASIC and MDEG probably seems to be the first two members of this family and the genes for the new channels remain to be discovered. The presence of a large extracellular domain between two transmembrane alpha-helices and the short NH2 and COOH terminal cytoplasmic segments, characterizes these proteins. In order to relate the three-dimensional (3D) structure to their physiological function, channel proteins have been the focus of various computational approaches. On the basis of available X-ray structures, structural models of channels may be constructed by homology modeling. Here we present 3D structure of rat Amiloride-sensitive cation channel 1, neuronal isoform B through Comparative Modeling studies. Our studies will be useful in understanding the biochemical functions and interaction properties in detail.
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大鼠阿米洛利敏感阳离子通道1、神经元异构体b的比较模型研究
上皮钠通道/脱generin (ENaC/DEG)基因家族的酸感离子通道(asic)是延长型阳离子通道。asic有两个跨膜段,它们是疏水的。各种质子门控离子通道表明,ASIC和MDEG可能是该家族的前两个成员,新通道的基因仍有待发现。在两个跨膜α -螺旋和短的NH2和COOH末端细胞质段之间存在一个大的胞外结构域,这是这些蛋白质的特征。为了将通道蛋白的三维结构与其生理功能联系起来,各种计算方法一直是通道蛋白研究的焦点。在现有x射线结构的基础上,采用同源建模的方法建立通道的结构模型。在这里,我们通过比较模型研究展示了大鼠阿米洛利敏感阳离子通道1,神经元异构体B的三维结构。我们的研究将有助于详细了解其生化功能和相互作用特性。
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