跳转至内容
Merck
  • Mitotic HOOK3 phosphorylation by ERK1c drives microtubule-dependent Golgi destabilization and fragmentation.

Mitotic HOOK3 phosphorylation by ERK1c drives microtubule-dependent Golgi destabilization and fragmentation.

iScience (2021-07-01)
Inbal Wortzel, Galia Maik-Rachline, Suresh Singh Yadav, Tamar Hanoch, Rony Seger
摘要

ERK1c is an alternatively spliced isoform of ERK1 that specifically regulates mitotic Golgi fragmentation, which allows division of the Golgi during mitosis. We have previously shown that ERK1c translocates to the Golgi during mitosis where it is activated by a resident MEK1b to induce Golgi fragmentation. However, the mechanism of ERK1c functions in the Golgi remained obscure. Here, we searched for ERK1c substrates and identified HOOK3 as a mediator of ERK1c-induced mitotic Golgi fragmentation, which requires a second phosphorylation by AuroraA for its function. In cycling cells, HOOK3 interacts with microtubules (MTs) and links them to the Golgi. Early in mitosis, HOOK3 is phosphorylated by ERK1c and later by AuroraA, resulting in HOOK3 detachment from the MTs, and elevated interaction with GM130. This detachment modulates Golgi stability and allows fragmentation of the Golgi. This study demonstrates a novel mechanism of Golgi apparatus destabilization early in mitosis to allow mitotic progression.

材料
货号
品牌
产品描述

Sigma-Aldrich
Duolink® In Situ 红色检测试剂
Roche
抗-GFP, from mouse IgG1κ (clones 7.1 and 13.1)
Sigma-Aldrich
单克隆抗 β-微管蛋白抗体 小鼠抗, clone TUB 2.1, ascites fluid
Sigma-Aldrich
抗 MAP 激酶 (ERK-1,ERK-2) 兔抗, whole antiserum