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Luteinizing Hormone Receptor Mutation (LHRN316S) Causes Abnormal Follicular Development Revealed by Follicle Single-Cell Analysis and CRISPR/Cas9

  • Chen Zhang
  • , Yongqiang Nie
  • , Bufang Xu
  • , Chunlan Mu
  • , Geng G. Tian
  • , Xiaoyong Li
  • , Weiwei Cheng*
  • , Aijun Zhang*
  • , Dali Li*
  • , Ji Wu*
  • *此作品的通讯作者
  • Shanghai Jiao Tong University
  • Tangdu Hospital, Fourth Military Medical University
  • Ningxia Medical University

科研成果: 期刊稿件文章同行评审

摘要

Abnormal interaction between granulosa cells and oocytes causes disordered development of ovarian follicles. However, the interactions between oocytes and cumulus granulosa cells (CGs), oocytes and mural granulosa cells (MGs), and CGs and MGs remain to be fully explored. Using single-cell RNA-sequencing (scRNA-seq), we determined the transcriptional profiles of oocytes, CGs and MGs in antral follicles. Analysis of scRNA-seq data revealed that CGs may regulate follicular development through the BMP15-KITL-KIT-PI3K-ARF6 pathway with elevated expression of luteinizing hormone receptor (LHR). Because internalization of the LHR is regulated by Arf6, we constructed LHRN316S mice by CRISPR/Cas9 to further explore mechanisms of follicular development and novel treatment strategies for female infertility. Ovaries of LHRN316S mice exhibited reduced numbers of corpora lutea and ovulation. The LHRN316S mice had a reduced rate of oocyte maturation in vitro and decreased serum progesterone levels. Mating LHRN316S female mice with ICR wild type male mice revealed that the infertility rate of LHRN316S mice was 21.4% (3/14). Litter sizes from LHRN316S mice were smaller than those from control wild type female mice. The oocytes from LHRN316S mice had an increased rate of maturation in vitro after progesterone administration in vitro. Furthermore, progesterone treated LHRN316S mice produced offspring numbers per litter equivalent to WT mice. These findings provide key insights into cellular interactions in ovarian follicles and provide important clues for infertility treatment. Graphical Abstract: (Figure presented.)

源语言英语
页(从-至)976-989
页数14
期刊Interdisciplinary Sciences - Computational Life Sciences
16
4
DOI
出版状态已出版 - 12月 2024

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