幽灵蛋白
细胞生物学
MAPK/ERK通路
生物
血管生成
磷酸化
DNMT1型
信号转导
磷酸蛋白质组学
莫辛
蛋白激酶A
细胞骨架
生物化学
甲基化
蛋白质磷酸化
癌症研究
甲基转移酶
埃兹林
细胞
DNA
作者
Paola Cruz Flores,Tasmia Ahmed,Julia Podgorski,Hannah R. Ortiz,Paul R. Langlais,Karthikeyan Mythreye,Nam Y. Lee
标识
DOI:10.1016/j.bbrc.2024.149916
摘要
βIV-spectrin is a membrane-associated cytoskeletal protein that maintains the structural stability of cell membranes and integral proteins such as ion channels and transporters. Its biological functions are best characterized in the brain and heart, although recently we discovered a fundamental new role in the vascular system. Using cellular and genetic mouse models, we reported that βIV-spectrin acts as a critical regulator of developmental and tumor-associated angiogenesis. βIV-spectrin was shown to selectively express in proliferating endothelial cells (EC) and suppress VEGF/VEGFR2 signaling by enhancing receptor internalization and degradation. Here we examined how these events impact the downstream kinase signaling cascades and target substrates. Based on quantitative phosphoproteomics, we found that βIV-spectrin significantly affects the phosphorylation of epigenetic regulatory enzymes in the nucleus, among which DNA methyltransferase 1 (DNMT1) was determined as a top substrate. Biochemical and immunofluorescence results showed that βIV-spectrin inhibits DNMT1 function by activating ERK/MAPK, which in turn phosphorylates DNMT1 at S717 to impede its nuclear localization. Given that DNMT1 controls the DNA methylation patterns genome-wide, and is crucial for vascular development, our findings suggest that epigenetic regulation is a key mechanism by which βIV-spectrin suppresses angiogenesis.
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