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Structural basis of the subcortical maternal complex and its implications in reproductive disorders
by
Guo, Li
, Gao, Zheng
, Li, Jialu
, Deng, Dong
, Ou, Guojin
, Han, Zhuo
, Qi, Qianqian
, Xiao, Qingjie
, Liu, Qingting
, Wang, Xiang
, Shi, Hubing
, Lu, Yuechao
, Xu, Chengpeng
, Qin, Dandan
, Li, Jinhong
, Chi, Pengliang
, Liu, Sibei
, Li, Lei
, Chen, Jing
in
631/136
/ 631/136/2444
/ 631/337
/ 631/535/1258/1259
/ 631/80
/ Assembly
/ Atomic structure
/ Biochemistry
/ Biological Microscopy
/ Biomedical and Life Sciences
/ C-Terminus
/ Complex formation
/ Electron microscopy
/ Embryogenesis
/ Embryonic growth stage
/ Females
/ Gametocytes
/ Life Sciences
/ Membrane Biology
/ Microscopy
/ Oocytes
/ Phenotypes
/ Protein Structure
/ Reproductive disorders
/ Reproductive pathology
/ Reproductive system
/ Transmission electron microscopy
/ Zygotes
2024
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Structural basis of the subcortical maternal complex and its implications in reproductive disorders
by
Guo, Li
, Gao, Zheng
, Li, Jialu
, Deng, Dong
, Ou, Guojin
, Han, Zhuo
, Qi, Qianqian
, Xiao, Qingjie
, Liu, Qingting
, Wang, Xiang
, Shi, Hubing
, Lu, Yuechao
, Xu, Chengpeng
, Qin, Dandan
, Li, Jinhong
, Chi, Pengliang
, Liu, Sibei
, Li, Lei
, Chen, Jing
in
631/136
/ 631/136/2444
/ 631/337
/ 631/535/1258/1259
/ 631/80
/ Assembly
/ Atomic structure
/ Biochemistry
/ Biological Microscopy
/ Biomedical and Life Sciences
/ C-Terminus
/ Complex formation
/ Electron microscopy
/ Embryogenesis
/ Embryonic growth stage
/ Females
/ Gametocytes
/ Life Sciences
/ Membrane Biology
/ Microscopy
/ Oocytes
/ Phenotypes
/ Protein Structure
/ Reproductive disorders
/ Reproductive pathology
/ Reproductive system
/ Transmission electron microscopy
/ Zygotes
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Structural basis of the subcortical maternal complex and its implications in reproductive disorders
by
Guo, Li
, Gao, Zheng
, Li, Jialu
, Deng, Dong
, Ou, Guojin
, Han, Zhuo
, Qi, Qianqian
, Xiao, Qingjie
, Liu, Qingting
, Wang, Xiang
, Shi, Hubing
, Lu, Yuechao
, Xu, Chengpeng
, Qin, Dandan
, Li, Jinhong
, Chi, Pengliang
, Liu, Sibei
, Li, Lei
, Chen, Jing
in
631/136
/ 631/136/2444
/ 631/337
/ 631/535/1258/1259
/ 631/80
/ Assembly
/ Atomic structure
/ Biochemistry
/ Biological Microscopy
/ Biomedical and Life Sciences
/ C-Terminus
/ Complex formation
/ Electron microscopy
/ Embryogenesis
/ Embryonic growth stage
/ Females
/ Gametocytes
/ Life Sciences
/ Membrane Biology
/ Microscopy
/ Oocytes
/ Phenotypes
/ Protein Structure
/ Reproductive disorders
/ Reproductive pathology
/ Reproductive system
/ Transmission electron microscopy
/ Zygotes
2024
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Structural basis of the subcortical maternal complex and its implications in reproductive disorders
Journal Article
Structural basis of the subcortical maternal complex and its implications in reproductive disorders
2024
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Overview
The subcortical maternal complex (SCMC) plays a crucial role in early embryonic development. Malfunction of SCMC leads to reproductive diseases in women. However, the molecular function and assembly basis for SCMC remain elusive. Here we reconstituted mouse SCMC and solved the structure at atomic resolution using single-particle cryo-electron microscopy. The core complex of SCMC was formed by MATER, TLE6 and FLOPED, and MATER embraced TLE6 and FLOPED via its NACHT and LRR domains. Two core complexes further dimerize through interactions between two LRR domains of MATERs in vitro. FILIA integrates into SCMC by interacting with the carboxyl-terminal region of FLOPED. Zygotes from mice with
Floped
C-terminus truncation showed delayed development and resembled the phenotype of zygotes from
Filia
knockout mice. More importantly, the assembly of mouse SCMC was affected by corresponding clinical variants associated with female reproductive diseases and corresponded with a prediction based on the mouse SCMC structure. Our study paves the way for further investigations on SCMC functions during mammalian preimplantation embryonic development and reveals underlying causes of female reproductive diseases related to SCMC mutations, providing a new strategy for the diagnosis of female reproductive disorders.
Here, using cryo-electron microscopy and functional assays in mouse oocytes and embryos, the authors delineate the composition of the subcortical maternal complex, showing that clinical variants associated with female reproductive diseases disrupt complex formation.
Publisher
Nature Publishing Group US,Nature Publishing Group
Subject
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