Cryo-EM reveals cholesterol binding in the lysosomal GPCR-like protein LYCHOS

Jie Zhao, Qingya Shen, Xihao Yong, Xin Li, Xiaowen Tian, Suyue Sun, Zheng Xu, Xiaoyu Zhang, Lu Zhang, Hao Yang, Zhenhua Shao, Haoxing Xu, Yiyang Jiang, Yan Zhang, Wei Yan
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Abstract

Cholesterol plays a pivotal role in modulating the activity of mechanistic target of rapamycin complex 1 (mTOR1), thereby regulating cell growth and metabolic homeostasis. LYCHOS, a lysosome-localized G-protein-coupled receptor-like protein, emerges as a cholesterol sensor and is capable of transducing the cholesterol signal to affect the mTORC1 function. However, the precise mechanism by which LYCHOS recognizes cholesterol remains unknown. Here, using cryo-electron microscopy, we determined the three-dimensional structural architecture of LYCHOS in complex with cholesterol molecules, revealing a unique arrangement of two sequential structural domains. Through a comprehensive analysis of this structure, we elucidated the specific structural features of these two domains and their collaborative role in the process of cholesterol recognition by LYCHOS.

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胆固醇在调节雷帕霉素机理靶标复合体 1(mTOR1)的活性,从而调节细胞生长和代谢平衡方面起着关键作用。LYCHOS是一种溶酶体定位的G蛋白偶联受体样蛋白,是胆固醇传感器,能够传递胆固醇信号,影响mTORC1的功能。然而,LYCHOS识别胆固醇的确切机制仍然未知。在这里,我们利用低温电子显微镜测定了 LYCHOS 与胆固醇分子复合物的三维结构体系,揭示了两个连续结构域的独特排列。通过对该结构的全面分析,我们阐明了这两个结构域的具体结构特征及其在 LYCHOS 识别胆固醇过程中的协同作用。
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