首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A structural organization for the Disrupted in Schizophrenia 1 protein identified by high-throughput screening reveals distinctly folded regions which are bisected by mental illness-related mutations
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A structural organization for the Disrupted in Schizophrenia 1 protein identified by high-throughput screening reveals distinctly folded regions which are bisected by mental illness-related mutations

机译:通过高通量筛选确定的精神分裂症1蛋白质紊乱的结构组织显示明显折叠的区域该区域被与精神疾病相关的突变一分为二

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摘要

Disrupted in Schizophrenia 1 (DISC1) is a scaffolding protein of significant importance for neurodevelopment and a prominent candidate protein in the pathology of major mental illness. DISC1 modulates a number of critical neuronal signaling pathways through protein-protein interactions; however, the mechanism by which this occurs and how DISC1 causes mental illness is unclear, partly because knowledge of the structure of DISC1 is lacking. A lack of homology with known proteins has hindered attempts to define its domain composition. Here, we employed the high-throughput Expression of Soluble Proteins by Random Incremental Truncation (ESPRIT) technique to identify discretely folded regions of human DISC1 via solubility assessment of tens of thousands of fragments of recombinant DISC1. We identified four novel structured regions, named D, I, S, and C, at amino acids 257–383, 539–655, 635–738, and 691–836, respectively. One region (D) is located in a DISC1 section previously predicted to be unstructured. All regions encompass coiled-coil or α-helical structures, and three are involved in DISC1 oligomerization. Crucially, three of these domains would be lost or disrupted by a chromosomal translocation event after amino acid 597, which has been strongly linked to major mental illness. Furthermore, we observed that a known illness-related frameshift mutation after amino acid 807 causes the C region to form aberrantly multimeric and aggregated complexes with an unstable secondary structure. This newly revealed domain architecture of DISC1, therefore, provides a powerful framework for understanding the critical role of this protein in a variety of devastating mental illnesses.
机译:在精神分裂症1(DISC1)中被破坏的支架蛋白对神经发育具有重要意义,并且是主要精神疾病病理学中的重要候选蛋白。 DISC1通过蛋白质-蛋白质相互作用调节许多关键的神经元信号通路。但是,这种情况的发生机理以及DISC1如何导致精神疾病尚不清楚,部分原因是缺乏对DISC1结构的了解。与已知蛋白质缺乏同源性阻碍了定义其域组成的尝试。在这里,我们通过随机增量截断(ESPRIT)技术采用高通量表达可溶性蛋白,通过对成千上万个重组DISC1片段的溶解度评估来鉴定人DISC1的离散折叠区域。我们确定了四个新颖的​​结构化区域,分别命名为D,I,S和C,分别位于氨基酸257-383、539-655、635-738和691-836。一个区域(D)位于先前预测为非结构化的DISC1部分中。所有区域都包含盘绕线圈或α螺旋结构,其中三个参与DISC1低聚。至关重要的是,氨基酸597之后的染色体易位事件会丢失或破坏这些域中的三个,这与主要的精神疾病密切相关。此外,我们观察到氨基酸807之后已知的疾病相关的移码突变会导致C区形成异常二级结构的异常多聚体和聚集复合体。因此,DISC1的这一新发现的域结构为理解该蛋白在各种毁灭性精神疾病中的关键作用提供了强大的框架。

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