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PEAK3/C19orf35 假激酶,一个新的 NFK3 激酶家族成员,通过二聚化抑制 CrkII。

PEAK3/C19orf35 pseudokinase, a new NFK3 kinase family member, inhibits CrkII through dimerization.

机构信息

Cardiovascular Research Institute, University of California, San Francisco, CA 94158.

Faculty of Agriculture and Biology, Warsaw University of Life Sciences, 02-776 Warsaw, Poland.

出版信息

Proc Natl Acad Sci U S A. 2019 Jul 30;116(31):15495-15504. doi: 10.1073/pnas.1906360116. Epub 2019 Jul 16.

Abstract

Members of the New Kinase Family 3 (NKF3), PEAK1/SgK269 and Pragmin/SgK223 pseudokinases, have emerged as important regulators of cell motility and cancer progression. Here, we demonstrate that C19orf35 (PEAK3), a newly identified member of the NKF3 family, is a kinase-like protein evolutionarily conserved across mammals and birds and a regulator of cell motility. In contrast to its family members, which promote cell elongation when overexpressed in cells, PEAK3 overexpression does not have an elongating effect on cell shape but instead is associated with loss of actin filaments. Through an unbiased search for PEAK3 binding partners, we identified several regulators of cell motility, including the adaptor protein CrkII. We show that by binding to CrkII, PEAK3 prevents the formation of CrkII-dependent membrane ruffling. This function of PEAK3 is reliant upon its dimerization, which is mediated through a split helical dimerization domain conserved among all NKF3 family members. Disruption of the conserved DFG motif in the PEAK3 pseudokinase domain also interferes with its ability to dimerize and subsequently bind CrkII, suggesting that the conformation of the pseudokinase domain might play an important role in PEAK3 signaling. Hence, our data identify PEAK3 as an NKF3 family member with a unique role in cell motility driven by dimerization of its pseudokinase domain.

摘要

新激酶家族 3(NKF3)成员 PEAK1/SgK269 和 Pragmin/SgK223 假激酶已成为细胞运动和癌症进展的重要调节因子。在这里,我们证明 C19orf35(PEAK3)是 NKF3 家族的新成员,是一种在哺乳动物和鸟类中进化保守的类激酶蛋白,也是细胞运动的调节剂。与家族成员在细胞中过表达时促进细胞伸长不同,PEAK3 过表达不会对细胞形状产生伸长作用,而是与肌动蛋白丝的丧失有关。通过对 PEAK3 结合伙伴的无偏搜索,我们鉴定出几种细胞运动调节剂,包括衔接蛋白 CrkII。我们表明,通过与 CrkII 结合,PEAK3 阻止了 CrkII 依赖性膜皱襞的形成。PEAK3 的这种功能依赖于其二聚化,这是通过所有 NKF3 家族成员保守的分裂螺旋二聚化结构域介导的。PEAK3 假激酶结构域中保守的 DFG 模体的破坏也干扰了其与 CrkII 结合的能力,这表明假激酶结构域的构象可能在 PEAK3 信号转导中发挥重要作用。因此,我们的数据将 PEAK3 鉴定为具有独特作用的 NKF3 家族成员,其通过其假激酶结构域的二聚化驱动细胞运动。

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