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OCRL1的Rab结合结构域与Rab8复合物的晶体结构以及OCRL1/Rab8模块对Lowe综合征的功能影响

Crystal structure of the Rab binding domain of OCRL1 in complex with Rab8 and functional implications of the OCRL1/Rab8 module for Lowe syndrome.

作者信息

Hagemann Nina, Hou Xiaomin, Goody Roger S, Itzen Aymelt, Erdmann Kai S

机构信息

Department of Biochemistry II, Ruhr-University Bochum, Bochum, Germany.

出版信息

Small GTPases. 2012 Apr-Jun;3(2):107-10. doi: 10.4161/sgtp.19380.

Abstract

Mutations of the inositol-5-phosphatase OCRL1 cause Lowe syndrome. Lowe syndrome is an inherited disease characterized by renal dysfunction and impaired development of the eye and the nervous system. OCRL1 is a Rab effector protein that can bind to a large number of different Rab proteins. We have recently determined the X-ray structure of the Rab-binding domain of OCRL1 in complex with Rab8. Furthermore, we have characterized point mutations that abolish binding to Rab proteins and cause Lowe syndrome. Here we shortly review our recent biophysical and structural work and discuss possible functional implications of our finding that Rab8 binds with the highest affinity to OCRL1 among the Rab proteins tested. This could direct further work on OCRL1 leading to a better understanding of the complex disease mechanism of Lowe syndrome.

摘要

肌醇-5-磷酸酶OCRL1的突变会导致劳氏综合征。劳氏综合征是一种遗传性疾病,其特征为肾功能障碍以及眼睛和神经系统发育受损。OCRL1是一种Rab效应蛋白,可与大量不同的Rab蛋白结合。我们最近确定了与Rab8结合的OCRL1的Rab结合结构域的X射线结构。此外,我们还对那些消除与Rab蛋白结合并导致劳氏综合征的点突变进行了表征。在此,我们简要回顾一下我们最近的生物物理和结构研究工作,并讨论我们的这一发现——在所测试的Rab蛋白中,Rab8与OCRL1的结合亲和力最高——可能具有的功能意义。这可能会指导有关OCRL1的进一步研究工作,从而更好地理解劳氏综合征复杂的疾病机制。

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