首页> 外文会议>Pacific Symposium on Biocomputing 2007 >PROTEIN INTERACTIONS AND DISEASE PHENOTYPES IN THE ABC TRANSPORTER SUPERFAMILY
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PROTEIN INTERACTIONS AND DISEASE PHENOTYPES IN THE ABC TRANSPORTER SUPERFAMILY

机译:ABC转运蛋白超家族中的蛋白质相互作用和疾病表型

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ABC transporter proteins couple the energy of ATP binding and hydrolysis to substrate transport across a membrane. In humans, clinical studies have implicated mutations in 19 of the 48 known ABC transporters in diseases such as cystic fibrosis and adrenoleukodystrophy. Although divergent in sequence space, the overall topology of these proteins, consisting of two transmembrane domains and two ATP-binding cassettes, is likely to be conserved across diverse organisms. We examine known intra-transporter domain interfaces using crystallographic structures of isolated and complexed domains in ABC transporter proteins and find that the nucleotide binding domain interfaces are better conserved than interfaces at the transmembrane domains. We then apply this analysis to identify known disease-associated point and deletion mutants for which disruption of domain-domain interfaces might indicate the mechanism of disease. Finally, we suggest a possible interaction site based on conservation of sequence and disease-association of point mutants.
机译:ABC转运蛋白将ATP结合和水解的能量与跨膜的底物转运相结合。在人类中,临床研究表明,在48种已知的ABC转运蛋白中,有19种存在突变,例如囊性纤维化和肾上腺皮质营养不良。尽管在序列空间上有所不同,但这些蛋白质的总体拓扑结构(由两个跨膜结构域和两个ATP结合盒组成)很可能在不同的生物体中均得到保守。我们使用分离的和复杂的域在ABC转运蛋白中的晶体结构检查了已知的转运蛋白内部域接口,发现核苷酸结合域接口比跨膜结构域的接口更好地保守。然后,我们应用此分析来识别已知的疾病相关点和缺失突变体,对于这些突变体而言,域域界面的破坏可能表明疾病的机制。最后,我们提出了基于序列保守性和点突变体疾病关联的可能的相互作用位点。

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