Mad2 is dispensable for accurate chromosome segregation but becomes essential when oocytes are subjected to environmental stress

Author:

Qiao Jing-Yi12,Zhou Qian3,Xu Ke12,Yue Wei1,Lei Wen-Long1,Li Yuan-Yuan1,Gu Lin-Jian12,Ouyang Ying-Chun1,Hou Yi1,Schatten Heide4,Meng Tie-Gang5ORCID,Wang Zhen-Bo1ORCID,Sun Qing-Yuan5ORCID

Affiliation:

1. State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences 1 , Beijing 100101 , China

2. University of Chinese Academy of Sciences 2 , Beijing 100049 , China

3. Shenzhen University 3 Department of Medicine , , Shenzhen, Guangdong 518060 , China

4. University of Missouri 4 Department of Veterinary Pathobiology , , Columbia, MO 65211 , USA

5. Guangzhou Key Laboratory of Metabolic Diseases and Reproductive Health, Guangdong-Hong Kong Metabolism & Reproduction Joint Laboratory, Reproductive Medicine Center, Guangdong Second Provincial General Hospital 5 , Guangzhou, Guangdong 510317 , China

Abstract

ABSTRACT Accurate chromosome segregation, monitored by the spindle assembly checkpoint (SAC), is crucial for the production of euploid cells. Previous in vitro studies by us and others showed that Mad2, a core member of the SAC, performs a checkpoint function in oocyte meiosis. Here, through an oocyte-specific knockout approach in mouse, we reconfirmed that Mad2-deficient oocytes exhibit an accelerated metaphase-to-anaphase transition caused by premature degradation of securin and cyclin B1 and subsequent activation of separase in meiosis I. However, it was surprising that the knockout mice were completely fertile and the resulting oocytes were euploid. In the absence of Mad2, other SAC proteins, including BubR1, Bub3 and Mad1, were normally recruited to the kinetochores, which likely explains the balanced chromosome separation. Further studies showed that the chromosome separation in Mad2-null oocytes was particularly sensitive to environmental changes and, when matured in vitro, showed chromosome misalignment, lagging chromosomes, and aneuploidy with premature separation of sister chromatids, which was exacerbated at a lower temperature. We reveal for the first time that Mad2 is dispensable for proper chromosome segregation but acts to mitigate environmental stress in meiotic oocytes.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Guangzhou Municipal Science and Technology Bureau

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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