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首页> 外文期刊>Journal of neurochemistry. >Glucocerebrosidase 1 and leucine-rich repeat kinase 2 in Parkinson disease and interplay between the two genes
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Glucocerebrosidase 1 and leucine-rich repeat kinase 2 in Parkinson disease and interplay between the two genes

机译:帕金森病中的葡萄糖脑苷脂酶 1 和富含亮氨酸的重复激酶 2 以及两个基因之间的相互作用

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The glucocerebrosidase 1 gene (GBA1), bi-allelic variants of which cause Gaucher disease (GD), encodes the lysosomal enzyme glucocerebrosidase (GCase) and is a risk factor for Parkinson Disease (PD). GBA1 variants are linked to a reduction in GCase activity in the brain. Variants in Leucine-Rich Repeat Kinase 2 (LRRK2), such as the gain-of-kinase-function variant G2019S, cause the most common familial form of PD. In patients without GBA1 and LRRK2 mutations, GCase and LRRK2 activity are also altered, suggesting that these two genes are implicated in all forms of PD and that they may play a broader role in PD pathogenesis. In this review, we review the proposed roles of GBA1 and LRRK2 in PD, focussing on the endolysosomal pathway. In particular, we highlight the discovery of Ras-related in brain (Rab) guanosine triphosphatases (GTPases) as LRRK2 kinase substrates and explore the links between increased LRRK2 activity and Rab protein function, lysosomal dysfunction, alpha-synuclein accumulation and GCase activity. We also discuss the discovery of RAB10 as a potential mediator of LRRK2 and GBA1 interaction in PD. Finally, we discuss the therapeutic implications of these findings, including current approaches and future perspectives related to novel drugs targeting LRRK2 and GBA1.
机译:葡萄糖脑苷脂酶 1 基因 (GBA1) 是导致戈谢病 (GD) 的双等位基因变体,编码溶酶体酶葡萄糖脑苷脂酶 (GCase),是帕金森病 (PD) 的危险因素。GBA1 变体与大脑中 GCase 活性的降低有关。富含亮氨酸重复激酶 2 (LRRK2) 的变异,例如激酶功能获得性变异 G2019S,可引起最常见的家族性 PD。在没有 GBA1 和 LRRK2 突变的患者中,GCase 和 LRRK2 活性也发生了改变,这表明这两个基因与所有形式的 PD 有关,并且它们可能在 PD 发病机制中发挥更广泛的作用。在这篇综述中,我们回顾了GBA1和LRRK2在PD中的作用,重点关注内溶酶体途径。特别是,我们强调了脑中 Ras 相关 (Rab) 鸟苷三磷酸酶 (GTP 酶) 作为 LRRK2 激酶底物的发现,并探索了 LRRK2 活性增加与 Rab 蛋白功能、溶酶体功能障碍、α-突触核蛋白积累和 GCase 活性之间的联系。我们还讨论了 RAB10 作为 PD 中 LRRK2 和 GBA1 相互作用的潜在介质的发现。最后,我们讨论了这些发现的治疗意义,包括与靶向LRRK2和GBA1的新药相关的当前方法和未来前景。

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