Molecular basis of the higher-order assembly of CatSper
成果类型:
Article
署名作者:
Xu, Qikui; Lin, Shiyi; Zhao, Qingqing; Ru, Yanfei; Kang, Hang; Zeng, Xuhui; Jiang, Min; Yan, Zhen; Wu, Jianping
署名单位:
Westlake University; Westlake University; Westlake Laboratory; Westlake University; Westlake University; Nantong University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2510754123
发表日期:
2026-01-13
页码:
e2510754123
关键词:
cryo-em
CatSper
higher-order assembly
sperm hyperactivation
CATSPER eta
MALE-INFERTILITY
transmembrane protein
calcium-channel
sperm motility
male-fertility
deletion
摘要:
CatSper serves as the primary Ca2+ entry pathway in the principal piece of sperm flagellum and is crucial for sperm motility and fertility. Sperm lacking functional CatSper channels fail to undergo hyperactivation during fertilization, leading to complete male infertility. Along the longitudinal axis of the sperm flagellum, staggered CatSper complexes align in a hand-in-hand arrangement, forming a distinctive quadrilinear zigzag arrays known as CatSper nanodomains. However, the molecular details of how CatSper oligomerizes to form such higher-order assembly remain unclear. In this study, we present the cryoelectron microscopy (cryo-EM) structures of native CatSper dimer (similar to 1.5 MDa) and trimer (similar to 2.3 MDa) megacomplexes, which represent the fundamental units of the zigzag array. We reveal the overall configuration of the zigzag assembly by characterizing the two distinct dimer interfaces that mediate CatSper oligomerization. Specifically, we elucidate the interaction details of two extracellular interfaces formed by CATSPER beta and CATSPER gamma at the two dimer interfaces, respectively, and find that CATSPER eta, a recently identified component of CatSper, constitutes the transmembrane interface within one of these dimer interfaces. Functional studies in mice demonstrate that CATSPER eta is essential for the formation of functional CatSper on the sperm flagellum, and CATSPER eta-deficient sperm fail to hyperactivate during fertilization, resulting in male infertility both in vivo and in vitro. Our data provide insights into the higher-order assembly of CatSper at the molecular level, offering clues for the development of male contraceptives.
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