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Src 激酶依赖性 3BP2 酪氨酸磷酸化对于 U937 细胞中 FcRγ 介导的吞噬作用和趋化因子表达是必需的。

Syk-dependent tyrosine phosphorylation of 3BP2 is required for optimal FcRγ-mediated phagocytosis and chemokine expression in U937 cells.

机构信息

Department of Genome Science and Microbiology, Faculty of Medical Sciences, University of Fukui, 23-3 Matsuoka-Shimoaizuki, Eiheiji, Fukui, 910-1193, Japan.

Life Science Innovation Center, University of Fukui, 3-9-1 Bunkyo, Fukui, Fukui, 910-8507, Japan.

出版信息

Sci Rep. 2017 Sep 13;7(1):11480. doi: 10.1038/s41598-017-11915-5.

Abstract

The adaptor protein c-Abl SH3 domain binding protein-2 (3BP2) is tyrosine phosphorylated by Syk in response to cross-linking of antigen receptors, which in turn activates various immune responses. Recently, a study using the mouse model of cherubism, a dominant inherited disorder caused by mutations in the gene encoding 3BP2, showed that 3BP2 is involved in the regulation of phagocytosis mediated by Fc receptor for IgG (FcγR) in macrophages. However, the molecular mechanisms underlying 3BP2-mediated regulation of phagocytosis and the physiological relevance of 3BP2 tyrosine phosphorylation remains elusive. In this study, we established various gene knockout U937 cell lines using the CRISPR/Cas9 system and found that 3BP2 is rapidly tyrosine phosphorylated by Syk in response to cross-linking of FcγRI. Depletion of 3BP2 caused significant reduction in the Fc receptor γ chain (FcRγ)-mediated phagocytosis in addition to the FcγRI-mediated induction of chemokine mRNA for IL-8, CCL3L3 and CCL4L2. Syk-dependent tyrosine phosphorylation of 3BP2 was required for overcoming these defects. Finally, we found that the PH and SH2 domains play important roles on FcγRI-mediated tyrosine phosphorylation of 3BP2 in HL-60 cells. Taken together, these results indicate that Syk-dependent tyrosine phosphorylation of 3BP2 is required for optimal FcRγ-mediated phagocytosis and chemokine expression.

摘要

衔接蛋白 c-Abl SH3 结构域结合蛋白-2(3BP2)在抗原受体交联时被Src 激酶家族成员 Syk 磷酸化,从而激活各种免疫反应。最近,一项利用 cherubism 小鼠模型的研究表明, cherubism 是一种常染色体显性遗传性疾病,由编码 3BP2 的基因突变引起,3BP2 参与了巨噬细胞中 IgG 受体(FcγR)介导的吞噬作用的调节。然而,3BP2 调节吞噬作用的分子机制以及 3BP2 酪氨酸磷酸化的生理相关性仍不清楚。在这项研究中,我们使用 CRISPR/Cas9 系统建立了各种基因敲除 U937 细胞系,发现 3BP2 在 FcγRI 交联后被 Syk 迅速磷酸化。3BP2 的缺失除了导致 FcγRI 介导的趋化因子 IL-8、CCL3L3 和 CCL4L2 的 mRNA 诱导减少外,还导致 Fc 受体 γ 链(FcRγ)介导的吞噬作用显著减少。Syk 依赖性的 3BP2 酪氨酸磷酸化对于克服这些缺陷是必需的。最后,我们发现 PH 和 SH2 结构域在 HL-60 细胞中对 3BP2 的 FcγRI 介导的酪氨酸磷酸化起着重要作用。综上所述,这些结果表明,3BP2 的 Syk 依赖性酪氨酸磷酸化是 FcRγ 介导的最佳吞噬作用和趋化因子表达所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f559/5597638/a959cf4cec39/41598_2017_11915_Fig1_HTML.jpg

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