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蛋白激酶C-蛋白酪氨酸磷酸酶1信号轴通过降低CBL的酪氨酸磷酸化使Fcγ受体信号脱敏,并调节FcγR介导的吞噬作用。

A PKC-SHP1 signaling axis desensitizes Fcγ receptor signaling by reducing the tyrosine phosphorylation of CBL and regulates FcγR mediated phagocytosis.

作者信息

Joshi Shweta, Singh Alok Ranjan, Zulcic Muamera, Durden Donald L

机构信息

UCSD Department of Pediatrics, Moores UCSD Cancer Center, University of California School of Medicine, San Diego, CA 92093, USA.

出版信息

BMC Immunol. 2014 May 7;15:18. doi: 10.1186/1471-2172-15-18.

Abstract

BACKGROUND

Fcγ receptors mediate important biological signals in myeloid cells including the ingestion of microorganisms through a process of phagocytosis. It is well-known that Fcγ receptor (FcγR) crosslinking induces the tyrosine phosphorylation of CBL which is associated with FcγR mediated phagocytosis, however how signaling molecules coordinate to desensitize these receptors is unclear. An investigation of the mechanisms involved in receptor desensitization will provide new insight into potential mechanisms by which signaling molecules may downregulate tyrosine phosphorylation dependent signaling events to terminate important signaling processes.

RESULTS

Using the U937IF cell line, we observed that FcγR1 crosslinking induces the tyrosine phosphorylation of CBL, which is maximal at 5 min. followed by a kinetic pattern of dephosphorylation. An investigation of the mechanisms involved in receptor desensitization revealed that pretreatment of U937IF or J774 cells with PMA followed by Fcγ receptor crosslinking results in the reduced tyrosine phosphorylation of CBL and the abrogation of downstream signals, such as CBL-CRKL binding, Rac-GTP activation and the phagocytic response. Pretreatment of J774 cells with GF109203X, a PKC inhibitor was observed to block dephosphorylation of CBL and rescued the phagocytic response. We demonstrate that the PKC induced desensitization of FcγR/ phagocytosis is associated with the inactivation of Rac-GTP, which is deactivated in a hematopoietic specific phosphatase SHP1 dependent manner following ITAM stimulation. The effect of PKC on FcγR signaling is augmented by the transfection of catalytically active SHP1 and not by the transfection of catalytic dead SHP1 (C124S).

CONCLUSIONS

Our results suggest a functional model by which PKC interacts with SHP1 to affect the phosphorylation state of CBL, the activation state of Rac and the negative regulation of ITAM signaling i.e. Fcγ receptor mediated phagocytosis. These findings suggest a mechanism for Fcγ receptor desensitization by which a serine-threonine kinase e.g. PKC downregulates tyrosine phosphorylation dependent signaling events via the reduced tyrosine phosphorylation of the complex adapter protein, CBL.

摘要

背景

Fcγ受体在髓系细胞中介导重要的生物学信号,包括通过吞噬作用摄取微生物。众所周知,Fcγ受体(FcγR)交联会诱导CBL的酪氨酸磷酸化,这与FcγR介导的吞噬作用相关,然而信号分子如何协同使这些受体脱敏尚不清楚。对受体脱敏所涉及机制的研究将为信号分子下调酪氨酸磷酸化依赖性信号事件以终止重要信号过程的潜在机制提供新的见解。

结果

使用U937IF细胞系,我们观察到FcγR1交联诱导CBL的酪氨酸磷酸化,在5分钟时达到最大值,随后是去磷酸化的动力学模式。对受体脱敏所涉及机制的研究表明,用佛波酯(PMA)预处理U937IF或J774细胞,然后进行Fcγ受体交联,会导致CBL的酪氨酸磷酸化减少以及下游信号的消除,如CBL-CRKL结合、Rac-GTP活化和吞噬反应。观察到用PKC抑制剂GF109203X预处理J774细胞可阻断CBL的去磷酸化并挽救吞噬反应。我们证明PKC诱导的FcγR/吞噬作用脱敏与Rac-GTP的失活有关,Rac-GTP在免疫受体酪氨酸活化基序(ITAM)刺激后以造血特异性磷酸酶SHP1依赖性方式失活。PKC对FcγR信号传导的作用通过转染具有催化活性的SHP1而增强,而不是通过转染催化失活的SHP1(C124S)。

结论

我们的结果提出了一个功能模型,通过该模型PKC与SHP1相互作用以影响CBL的磷酸化状态、Rac的活化状态以及ITAM信号传导的负调节,即Fcγ受体介导的吞噬作用。这些发现提示了一种Fcγ受体脱敏的机制,即丝氨酸 - 苏氨酸激酶(如PKC)通过降低复合衔接蛋白CBL的酪氨酸磷酸化来下调酪氨酸磷酸化依赖性信号事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4e8/4017086/b88d244d222a/1471-2172-15-18-1.jpg

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