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巨噬细胞FcγRIIIA的刺激激活了与受体相关的蛋白酪氨酸激酶Syk,并诱导包括p95Vav和p62/ GAP相关蛋白在内的多种蛋白磷酸化。

Stimulation of macrophage Fc gamma RIIIA activates the receptor-associated protein tyrosine kinase Syk and induces phosphorylation of multiple proteins including p95Vav and p62/GAP-associated protein.

作者信息

Darby C, Geahlen R L, Schreiber A D

机构信息

Graduate Group in Immunology, University of Pennsylvania, Philadelphia 19104.

出版信息

J Immunol. 1994 Jun 1;152(11):5429-37.

PMID:8189062
Abstract

The role of tyrosine phosphorylation during signal transduction by the phagocytic macrophage (Mphi) FcR Fc gamma RIIIA was investigated. Cross-linking Fc gamma RIIIA on pulmonary Mphi or cultured monocytes used as in vitro model for differentiated Mphi induced rapid and transient phosphorylation of multiple protein substrates. The lymphocyte/mast cell 72-kDa protein tyrosine kinase (PTK) designated PTK72 or Syk, whose expression in Mphi was previously unknown, was identified as a major substrate by immunoprecipitation and phosphopeptide mapping. Activation of Fc gamma RIIIA stimulated a fourfold increase in Syk kinase activity assessed by autophosphorylation. Under mild lysis conditions several specific proteins were co-precipitated with the gamma subunit of Fc gamma RIIIA. Tyrosine kinase activity was also co-precipitated with gamma, as shown by in vitro phosphorylation of gamma. One of these kinases was identified as Syk by phosphopeptide mapping, suggesting a physical association between this PTK and the receptor. Two additional phosphoproteins induced by Fc gamma RIIIA cross-linking were identified: the hematopoietic proto-oncogene product p95Vav, previously implicated in B lymphocyte and mast cell signaling; and p62, a protein associated with p21Ras-GAP. Our results also establish that there are important functional similarities in signal transduction between a phagocytic Mphi FcR and other multi-subunit Ig gene family receptors in diverse cell lineages.

摘要

研究了吞噬性巨噬细胞(Mphi)FcR FcγRIIIA在信号转导过程中酪氨酸磷酸化的作用。用肺巨噬细胞或培养的单核细胞作为分化巨噬细胞的体外模型,交联FcγRIIIA可诱导多种蛋白质底物快速且短暂的磷酸化。通过免疫沉淀和磷酸肽图谱分析,淋巴细胞/肥大细胞72 kDa蛋白酪氨酸激酶(PTK)(命名为PTK72或Syk,其在巨噬细胞中的表达此前未知)被确定为主要底物。通过自身磷酸化评估,FcγRIIIA的激活刺激Syk激酶活性增加了四倍。在温和的裂解条件下,几种特定蛋白质与FcγRIIIA的γ亚基共沉淀。酪氨酸激酶活性也与γ共沉淀,γ的体外磷酸化证明了这一点。通过磷酸肽图谱分析,其中一种激酶被确定为Syk,表明该PTK与受体之间存在物理关联。还鉴定出另外两种由FcγRIIIA交联诱导的磷酸化蛋白:造血原癌基因产物p95Vav,此前与B淋巴细胞和肥大细胞信号传导有关;以及p62,一种与p21Ras-GAP相关的蛋白质。我们的结果还表明,吞噬性巨噬细胞FcR与不同细胞谱系中的其他多亚基Ig基因家族受体在信号转导方面存在重要的功能相似性。

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