The role of SRPK1-mediated phosphorylation of SR proteins in the chromatin configuration transition of mouse germinal vesicle oocytes.

IF 2.2 4区 医学 Q3 MEDICINE, RESEARCH & EXPERIMENTAL
Xia Wang, Shuai Zhou, Haojie Yin, Jian Han, Yue Hu, Siqi Wang, Congjing Wang, Jie Huang, Junqiang Zhang, Xiufeng Ling, Ran Huo
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Abstract

Meiotic resumption in mammalian oocytes involves nuclear and organelle structural changes, notably the chromatin configuration transition from a non-surrounding nucleolus (NSN) to surrounding nucleolus (SN) in germinal vesicle oocytes. In the current study, we found that nuclear speckles (NSs), a subnuclear structure mainly composed of serine-arginine (SR) proteins, changed from a diffuse spotted distribution in mouse NSN oocytes to an aggregated pattern in SN oocytes. We also found that the SR protein-specific kinase 1 (SRPK1), an enzyme that phosphorylates SR proteins, co-localized with NSs at the SN stage, and that NSN oocytes failed to transition to SN oocytes after the inhibition of SRPK1 activity. Furthermore, the typical structure of the chromatin ring around the nucleolus in SN oocytes collapsed after treatment with an SRPK1 inhibitor. Mechanistically, phosphorylated SR proteins were found to be related to chromatin as shown by a salt extraction experiment, and in situ DNase I assay showed that the accessibility of chromatin was enhanced in SN oocytes when SRPK1 was inhibited, accompanied by a decreased repressive modification on histone and the abnormal recurrence of a transcriptional signal. In conclusion, our results indicated that SRPK1-regulated phosphorylation of SR proteins was involved in the NSN-SN transition and played an important role in maintaining the condensed nucleus of SN oocytes via interacting with chromatin.

SRPK1 介导的 SR 蛋白磷酸化在小鼠生殖泡卵母细胞染色质构型转变中的作用
哺乳动物卵母细胞的减数分裂恢复涉及细胞核和细胞器结构的变化,特别是染色质构型在生殖小泡(GV)卵母细胞中从非环绕核仁(NSN)向环绕核仁(SN)的转变。我们的研究发现,核斑点(一种主要由丝氨酸-精氨酸(SR)蛋白组成的核下结构)从小鼠NSN卵母细胞中的弥散斑点分布转变为SN卵母细胞中的聚集模式。我们进一步发现,磷酸化SR蛋白的酶SRPK1在SN期与NS共定位,抑制SRPK1的活性后,NSN卵母细胞不能转化为SN卵母细胞。此外,抑制剂处理后,SN 卵母细胞核仁周围染色质环的典型结构崩溃。为探讨其机制,盐提取实验证实磷酸化的SR蛋白与染色质相关,原位DNase I检测表明,SRPK1被抑制后,SN卵母细胞染色质的可及性增强,同时组蛋白的抑制修饰减少,转录信号异常复现。总之,我们的研究结果表明,SRPK1调控的SR蛋白磷酸化参与了NSN向SN的转变,并通过与染色质的相互作用在维持SN卵母细胞凝聚核中发挥了重要作用。
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来源期刊
Journal of Biomedical Research
Journal of Biomedical Research MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
4.60
自引率
0.00%
发文量
69
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