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首页> 外文期刊>Journal of Molecular Biology >Structural Evidence for an Octameric Ring Arrangement of SARM1
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Structural Evidence for an Octameric Ring Arrangement of SARM1

机译:SARM1的八大角圈安排的结构证据

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SARM1 induces axonal degeneration in response to various insults and is therefore considered an attractive drug target for the treatment of neuro-degenerative diseases as well as for brain and spinal cord injuries. SARM1 activity depends on the integrity of the protein's SAM domains, as well as on the enzymatic conversion of NAD + to ADPR (ADP Ribose) products by the SARM1's TIR domain. Therefore, inhibition of either SAM or TIR functions may constitute an effective therapeutic strategy. However, there is currently no SARM1-directed therapeutic approach available because of an insufficient structural and mechanistic understanding of this protein. In this study, we found that SARM1 assembles into an octameric ring. This arrangement was not described before in other SAM proteins, but is reminiscent of the apoptosome and inflammasome well-known apoptotic ring-like oligomers. We show that both SARM1 and the isolated tandem SAM(1-2) domains form octamers in solution, and electron microscopy analysis reveals an octameric ring of SARM1. We determined the crystal structure of SAM(1-2) and found that it also forms a closed octameric ring in the crystal lattice. The SAM(1-2) ring interactions are mediated by complementing "lock and key" hydrophobic grooves and inserts and electrostatic charges between the neighboring protomers. We have mutated several interacting SAM1-2 interfaces and measured how these mutations affect SARM1 apoptotic activity in cultured cells, and in this way identified critical oligomerization sites that facilitate cell death. These results highlight the importance of oligomerization for SARM1 function and reveal critical epitopes for future targeted drug development. (C) 2019 Elsevier Ltd. All rights reserved.
机译:SARM1诱导伴随各种损伤的轴突变性,因此被认为是一种有吸引力的药物靶标,用于治疗神经退行性疾病以及脑和脊髓损伤。 SARM1活性取决于蛋白质的SAM结构域的完整性,以及SARM1的TIR结构域的NAD +对ADPR(ADP核糖)产品的酶促转化。因此,抑制SAM或TIR功能可以构成有效的治疗策略。然而,目前没有SARM1定向治疗方法,因为对该蛋白质的结构和机械理解不足。在这项研究中,我们发现SARM1组装成八大号环。在其他SAM蛋白之前未描述这种布置,而是使凋亡物组和炎症组众所周知的凋亡环状低聚物中的。我们表明SARM1和分离的串联山姆(1-2)结构域在溶液中形成八羟肟,电子显微镜分析显示SARM1的八大号环。我们确定了SAM(1-2)的晶体结构,发现它也在晶格中形成闭合的八大号环。 SAM(1-2)环相互作用通过互补“锁和钥匙”疏水槽和邻近的原料之间的静电电荷来介导。我们已经突变了几种相互作用的SAM1-2界面,并测量了这些突变如何影响培养细胞中的SARM1凋亡活性,并以这种方式确定了促进细胞死亡的关键低聚点。这些结果突出了寡聚化对SARM1功能的重要性,并揭示了未来靶向药物发展的关键表现因素。 (c)2019 Elsevier Ltd.保留所有权利。

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