Structural studies on AIPL1 and its functional interactions with NUB1 to identify key interacting residues in LCA4.

Journal of ocular biology, diseases, and informatics Pub Date : 2013-04-04 eCollection Date: 2012-12-01 DOI:10.1007/s12177-013-9102-9
S Muthukumaran, V Umashankar, Meena Revathi Valliappan
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引用次数: 2

Abstract

Leber congenital amaurosis (LCA) is an autosomal recessive disorder that causes visual impairment in children due to fifteen different gene mutations. Of these, mutations in Aryl-Hydrocarbon Receptor Interacting Protein-like 1 (AIPL1) cause the most severe form of LCA (LCA4) leading to the degeneration of photoreceptor cells. NEDD8 Ultimate Buster 1 (NUB1), a protein that regulates cell cycle progression, interacts with AIPL1 to prevent the over expression of NUB1. In the case of over expression, cell cycle progression is disrupted and may lead to LCA. The studies on interactions between these two proteins will aid in identifying potential modulators for this condition. Since no three-dimensional structure is currently available for these two proteins, in this study we predicted the structures of these two proteins by molecular modelling methods. Moreover, we also modelled the three proven significant mutant forms of AIPL1 spanning the tetratricopeptide domain. Finally, both the modelled wild and mutant structures of AIPL1 (A197P, C239R and G262S) were computationally docked to NUB1, so as to map the potential molecular interactions. This is the first study on modelling the structure-function relationship of AIPL1-NUB1 interactions which shall aid in discovery of novel therapeutic agents.

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AIPL1的结构研究及其与NUB1的功能相互作用,以确定LCA4中关键的相互作用残基。
Leber先天性黑朦(LCA)是一种常染色体隐性遗传病,由于15种不同的基因突变导致儿童视力受损。其中,芳基烃受体相互作用蛋白样1 (AIPL1)的突变引起最严重的LCA (LCA4),导致光感受器细胞退化。NEDD8 Ultimate Buster 1 (NUB1)是一种调节细胞周期进程的蛋白,可与AIPL1相互作用以防止NUB1的过表达。在过表达的情况下,细胞周期进程被打乱,并可能导致LCA。研究这两种蛋白质之间的相互作用将有助于确定这种情况的潜在调节剂。由于这两种蛋白目前还没有三维结构,在本研究中我们通过分子建模的方法预测了这两种蛋白的结构。此外,我们还模拟了跨越四肽结构域的AIPL1的三种已证实的显著突变形式。最后,将模拟的AIPL1野生型和突变型结构(A197P、C239R和G262S)与NUB1进行计算对接,从而绘制潜在的分子相互作用图谱。这是第一个模拟AIPL1-NUB1相互作用的结构-功能关系的研究,将有助于发现新的治疗药物。
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