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LRRK2拮抗型PPM1H磷酸酶的终产物抑制作用

End-product inhibition of the LRRK2-counteracting PPM1H phosphatase.

作者信息

Adhikari Ayan, Tripathi Aashutosh, Chiang Claire Y, Sherpa Pemba, Pfeffer Suzanne R

机构信息

Department of Biochemistry, Stanford University School of Medicine, Stanford, CA, United States.

Aligning Science Across Parkinson's (ASAP) Collaborative Research Network, San Francisco, CA, United States.

出版信息

bioRxiv. 2025 May 17:2025.05.16.654599. doi: 10.1101/2025.05.16.654599.

Abstract

PPM1H phosphatase reverses Parkinson's disease-associated, Leucine Rich Repeat Kinase 2-mediated, Rab GTPase phosphorylation. We showed previously that PPM1H relies on an N-terminal amphipathic helix for Golgi membrane localization and this helix enables PPM1H to associate with liposomes ; binding to highly curved liposomes activates PPM1H's phosphatase activity. We show here that PPM1H also contains an allosteric binding site for its non-phosphorylated reaction products, Rab8A and Rab10. Microscale thermophoresis revealed that PPM1H binds thio-phosphorylated Rab8A at the active site with a K of ~1μM; binding of Rab8A and Rab10 to an alternative site is of similar affinity and is not detected for another LRRK2 substrate, Rab12. Non-phosphorylated Rab8A or Rab10 inhibit PPM1H phosphatase reactions at concentrations consistent with their measured binding affinities and fail to inhibit PPM1H L66R phosphatase reactions. Independent confirmation of non-phosphorylated Rab binding to PPM1H was obtained by sucrose gradient co-flotation of non-phosphorylated Rabs with liposome-bound PPM1H. Finally, Rab8A or Rab10 binding also requires PPM1H's amphipathic helix, without which the interaction affinity is decreased about 6-fold. These experiments indicate that Golgi associated Rab proteins contribute to the localization of PPM1H and non-phosphorylated Rabs regulate PPM1H phosphatase activity via an allosteric site. Targeting this site could represent a strategy to enhance PPM1H-mediated dephosphorylation of LRRK2 substrates, offering a potential therapeutic approach to counteract LRRK2-driven Parkinson's disease.

摘要

PPM1H磷酸酶可逆转帕金森病相关的富含亮氨酸重复序列激酶2(LRRK2)介导的Rab GTP酶磷酸化。我们之前表明,PPM1H依赖于N端两亲性螺旋进行高尔基体膜定位,并且该螺旋使PPM1H能够与脂质体结合;与高度弯曲的脂质体结合可激活PPM1H的磷酸酶活性。我们在此表明,PPM1H还含有一个针对其非磷酸化反应产物Rab8A和Rab10的变构结合位点。微量热泳分析表明,PPM1H在活性位点以约1μM的解离常数(K)结合硫代磷酸化的Rab8A;Rab8A和Rab10与另一个位点的结合具有相似的亲和力,而另一个LRRK2底物Rab12则未检测到这种结合。非磷酸化的Rab8A或Rab10在与其测量的结合亲和力一致的浓度下抑制PPM1H磷酸酶反应,但不能抑制PPM1H L66R磷酸酶反应。通过非磷酸化的Rabs与脂质体结合的PPM1H进行蔗糖梯度共浮选,独立证实了非磷酸化的Rabs与PPM1H的结合。最后,Rab8A或Rab10的结合也需要PPM1H的两亲性螺旋,没有该螺旋,相互作用亲和力会降低约6倍。这些实验表明,高尔基体相关的Rab蛋白有助于PPM1H的定位,并且非磷酸化的Rabs通过变构位点调节PPM1H磷酸酶活性。靶向该位点可能代表一种增强PPM1H介导的LRRK2底物去磷酸化的策略,为对抗LRRK2驱动的帕金森病提供一种潜在的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de68/12132568/94e464cbd624/nihpp-2025.05.16.654599v1-f0001.jpg

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