LRRK2 通过其犰狳结构域以 GTP 依赖性方式与 Rab32 亚家族结合。

Q2 Biochemistry, Genetics and Molecular Biology Small GTPases Pub Date : 2021-03-01 Epub Date: 2019-09-25 DOI:10.1080/21541248.2019.1666623
Emma McGrath, Dieter Waschbüsch, Brian M Baker, Amir R Khan
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引用次数: 0

摘要

LRRK2 是一种多域 Ser/Thr 激酶,与帕金森病的遗传和散发性病例有关。许多与疾病相关的突变都与中央 ROC-COR 调节区和随后的激酶结构域有关,从而导致催化活性增强。人类 LRRK2 的 N 端由犰狳重复基团(ARM)和杏仁蛋白重复基团(ANK)组成。最近,Rab GTP 酶成为 LRRK2 功能的关键参与者,既是激酶的底物,也是催化活性的调节因子。Rabs 通过其 GTP 依赖性开关 1 和 2 区将效应蛋白招募到不同的亚细胞区,以调节膜的转运。LRRK2 在开关 2 中磷酸化 Rab8、Rab10 和 Rab12,并通过与 Rab29 的相互作用来调节这一活性。此外,相关的 Rab32 亚家族 GTP 酶 Rab32 和 Rab38 也与 LRRK2 相互作用。在这里,我们绘制了 Rab32 亚家族与 LRRK2 的 ARM 结构域的相互作用图。在体外,这些复合物依赖于 Rabs 的 GTP 状态,这意味着 LRRK2 可能是 Rab32 亚家族小 GTP 酶的效应物。Rab32 家族 GTP 酶的 X 射线晶体结构和随后的突变研究显示,开关 1 中的一个带正电荷的残基是 Rab32/38 与 LRRK2 结合的关键。ARM 结构域的同源建模和突变分析表明,带负电荷的残基有助于复合物的形成。这些结构和生化研究为了解 Rab 对 LRRK2 的调控及其在帕金森病中的作用的分子基础提供了一个框架。
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LRRK2 binds to the Rab32 subfamily in a GTP-dependent manner via its armadillo domain.

LRRK2 is a multi-domain Ser/Thr kinase that is associated with inherited and sporadic cases of Parkinson's disease. Many mutations linked to disease are associated within a central ROC-COR regulatory region and the subsequent kinase domain, leading to enhanced catalytic activity. The N-terminus of human LRRK2 consists of armadillo repeat motifs (ARMs) followed by ankyrin repeats (ANKs). Recently, Rab GTPases have emerged as key players in LRRK2 function, both as substrates of the kinase, and as regulators of the catalytic activity. Rabs recruit effector proteins via their GTP-dependent switch 1 and 2 regions to distinct sub-cellular compartments to regulate membrane trafficking. LRRK2 phosphorylates Rab8, Rab10 and Rab12 in switch 2, and this activity is regulated via interactions with Rab29. Furthermore, the related Rab32-subfamily GTPases, Rab32 and Rab38, have also been shown to interact with LRRK2. Here, we have mapped the interactions of the Rab32-subfamily to the ARM domain of LRRK2. The complexes are dependent on the GTP state of the Rabs in vitro, implying that LRRK2 may be an effector of the Rab32-subfamily of small GTPases. X-ray crystal structures of the Rab32-family GTPases and subsequent mutational studies reveal that a positively charged residue in switch 1 is critical for binding of Rab32/38 to LRRK2. Homology modelling and mutational analyses of the ARM domain point to a patch of negatively charged residues that contribute to complex formation. These structural and biochemical studies provide a framework for understanding the molecular basis for Rab regulation of LRRK2 and its role in Parkinson's disease.

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来源期刊
Small GTPases
Small GTPases Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
6.10
自引率
0.00%
发文量
6
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