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磷脂酰肌醇3激酶和蛋白激酶Cζ在血小板生成素诱导的原代小鼠巨核细胞丝裂原活化蛋白激酶激活中的作用。

The roles of phosphatidylinositol 3-kinase and protein kinase Czeta for thrombopoietin-induced mitogen-activated protein kinase activation in primary murine megakaryocytes.

作者信息

Rojnuckarin P, Miyakawa Y, Fox N E, Deou J, Daum G, Kaushansky K

机构信息

Division of Hematology, University of Washington School of Medicine, Seattle, Washington 98195, USA.

出版信息

J Biol Chem. 2001 Nov 2;276(44):41014-22. doi: 10.1074/jbc.M106508200. Epub 2001 Sep 4.

DOI:10.1074/jbc.M106508200
PMID:11535599
Abstract

Thrombopoietin (TPO) stimulates a network of intracellular signaling pathways that displays extensive cross-talk. We have demonstrated previously that the ERK/mitogen-activated protein kinase pathway is important for TPO-induced endomitosis in primary megakaryocytes (MKs). One known pathway by which TPO induces ERK activation is through the association of Shc with the penultimate phosphotyrosine within the TPO receptor, Mpl. However, several investigators found that the membrane-proximal half of the cytoplasmic domain of Mpl is sufficient to activate ERK in vitro and support base-line megakaryopoiesis in vivo. Using BaF3 cells expressing a truncated Mpl (T69Mpl) as a tool to identify non-Shc/Ras-dependent signaling pathways, we describe here novel mechanisms of TPO-induced ERK activation mediated, in part, by phosphoinositide 3-kinase (PI3K). Similar to cells expressing full-length receptor, PI3K was activated by its incorporation into a complex with IRS2 or Gab2. Furthermore, the MEK-phosphorylating activity of protein kinase Czeta (PKCzeta) was also enhanced after TPO stimulation of T69Mpl, contributing to ERK activity. PKCzeta and PI3K also contribute to TPO-induced ERK activation in MKs, confirming their physiological relevance. Like in BaF3 cells, a TPO-induced signaling complex containing p85PI3K is detectable in MKs expressing T61Mpl and is probably responsible for PI3K activation. These data demonstrate a novel role of PI3K and PKCzeta in steady-state megakaryopoiesis.

摘要

血小板生成素(TPO)可刺激一个存在广泛相互作用的细胞内信号通路网络。我们之前已经证明,ERK/丝裂原活化蛋白激酶通路对于TPO诱导原代巨核细胞(MKs)进行核内有丝分裂很重要。TPO诱导ERK激活的一个已知途径是通过Shc与TPO受体Mpl倒数第二个磷酸酪氨酸的结合。然而,一些研究人员发现,Mpl细胞质结构域的膜近端一半在体外足以激活ERK,并在体内支持基线巨核细胞生成。利用表达截短型Mpl(T69Mpl)的BaF3细胞作为工具来鉴定非Shc/Ras依赖性信号通路,我们在此描述了TPO诱导的ERK激活的新机制,该机制部分由磷酸肌醇3激酶(PI3K)介导。与表达全长受体的细胞类似,PI3K通过与IRS2或Gab2形成复合物而被激活。此外,在TPO刺激T69Mpl后,蛋白激酶Czeta(PKCzeta)的MEK磷酸化活性也增强,这有助于ERK的活性。PKCzeta和PI3K也有助于TPO在MKs中诱导的ERK激活,证实了它们的生理相关性。与在BaF3细胞中一样,在表达T61Mpl的MKs中可检测到一种由p85PI3K组成的TPO诱导信号复合物,它可能负责PI3K的激活。这些数据证明了PI3K和PKCzeta在稳态巨核细胞生成中的新作用。

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