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丝氨酸苏氨酸激酶 1(PLK1)依赖性亚甲基四氢叶酸还原酶(MTHFR)的磷酸化调节通过组蛋白甲基化进行的复制。

Polo-like kinase 1 (PLK1)-dependent phosphorylation of methylenetetrahydrofolate reductase (MTHFR) regulates replication via histone methylation.

机构信息

a Beijing Key Laboratory of DNA Damage Response and College of Life Science , Capital Normal University , Beijing , China.

b National Institute of Biological Sciences , Beijing , China.

出版信息

Cell Cycle. 2017 Oct 18;16(20):1933-1942. doi: 10.1080/15384101.2017.1363942. Epub 2017 Aug 18.

Abstract

Methylenetetrahydrofolate reductase (MTHFR) is a key enzyme regulating the folate cycle and its genetic variations have been associated with various human diseases. Previously we identified that MTHFR is phosphorylated by cyclin-dependent kinase 1 (CDK1) at T34 and MTHFR underlies heterochromatin maintenance marked by H3K9me3 levels. Herein we demonstrate that pT34 creates a binding motif that docks MTHFR to the polo-binding domain (PBD) of polo-like kinase 1 (PLK1), a fundamental kinase that orchestrates many cell cycle events. We show that PLK1 phosphorylates MTHFR at T549 in vitro and in vivo. Further, we uncovered a role of MTHFR in replication. First, MTHFR depletion increased the fraction of cells in S phase. This defect could not be rescued by siRNA resistant plasmids harboring T549A, but could be restored by overproduction of Suv4-20H2, the H4K20 methyltransferase. Moreover, siMTHFR attenuated H4K20me3 levels, which could be rescued by Suv4-20H2 overproduction. More importantly, we also investigated MTHFR-E429A, the protein product of an MTHFR single nucleotide variant. MTHFR-E429A overexpression also increased S phase cells and decreased H4K20me3 levels, and it is linked to a poor glioma prognosis in the Chinese population. Collectively, we have unveiled a vital role of PLK1-dependent phosphorylation of MTHFR in replication via histone methylation, and implicate folate metabolism with glioma.

摘要

亚甲基四氢叶酸还原酶(MTHFR)是调节叶酸循环的关键酶,其遗传变异与多种人类疾病有关。此前我们发现 MTHFR 可被周期蛋白依赖性激酶 1(CDK1)在 T34 位磷酸化,MTHFR 是异染色质维持的基础,其标志是 H3K9me3 水平。在此,我们证明 pT34 形成了一个结合基序,使 MTHFR 与丝氨酸/苏氨酸激酶 PLK1 的 polo 结合域(PBD)结合,PLK1 是协调许多细胞周期事件的基本激酶。我们证明 PLK1 可在体外和体内将 MTHFR 磷酸化至 T549 位。此外,我们发现了 MTHFR 在复制中的作用。首先,MTHFR 耗竭会增加 S 期细胞的比例。这种缺陷不能通过携带 T549A 的 siRNA 抗性质粒来挽救,但可以通过 Suv4-20H2 的过表达来恢复。此外,siMTHFR 降低了 H4K20me3 水平,而 Suv4-20H2 的过表达可以挽救这一缺陷。更重要的是,我们还研究了 MTHFR-E429A,这是 MTHFR 单核苷酸变异的蛋白产物。MTHFR-E429A 的过表达也增加了 S 期细胞并降低了 H4K20me3 水平,并且与中国人群中的胶质瘤预后不良有关。总之,我们揭示了 PLK1 依赖性 MTHFR 磷酸化在通过组蛋白甲基化介导的复制中的重要作用,并暗示了叶酸代谢与胶质瘤的关系。

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