视网膜
细胞生长
生物
细胞生物学
组蛋白H3
甲基转移酶
小发夹RNA
组蛋白
细胞凋亡
遗传学
基因敲除
甲基化
基因
生物化学
作者
Toshiro Iwagawa,Ryoko Kawabata,Masaya Fukushima,Hiroshi Kuribayashi,Sumiko Watanabe
出处
期刊:FEBS Letters
[Wiley]
日期:2022-11-09
卷期号:597 (3): 427-436
被引量:7
标识
DOI:10.1002/1873-3468.14537
摘要
Trimethylation of histone H3 at lysine 36 (H3K36me3) is associated with active transcription. We used mouse retinal explant cultures and shRNA to investigate the roles of Setd2 and Setd5 , which encode H3K36me3 methyltransferases, in retinal development. We found that shSetd5 caused abnormal retinal structures and reduced rods and Müller cells, whereas shSetd2 did not cause any abnormalities. The mutant SETD5 lacking the SET domain failed to reverse the phenotypes observed in the shSetd5‐expressing retinas, while SETD5S1257*, which does not interact with HDAC3 and PAF1 complexes, rescued proliferation, but not apoptosis, induced by shSetd5. Taken together, we found that Setd5 , but not Setd2 , is essential for sustaining retinal cell survival and proliferation, and the SET domain of SETD5 is pivotal for both functions.
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