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PKC-ε 伪底物和催化活性对于 IgG 介导的吞噬作用过程中的膜转运是必需的。

PKC-ε pseudosubstrate and catalytic activity are necessary for membrane delivery during IgG-mediated phagocytosis.

机构信息

Centers for Cell Biology and Cancer Researchnces, Albany Medical College, Albany, New York, USA.

出版信息

J Leukoc Biol. 2013 Jul;94(1):109-22. doi: 10.1189/jlb.1212634. Epub 2013 May 13.

Abstract

In RAW 264.7 cells, PKC-ε regulates FcγR-mediated phagocytosis. BMDM behave similarly; PKC-ε concentrates at phagosomes and internalization are reduced in PKC-ε⁻/⁻ cells. Two questions were asked: what is the role of PKC-ε? and what domains are necessary for PKC-ε concentration? Function was studied using BMDM and frustrated phagocytosis. On IgG surfaces, PKC-ε⁻/⁻ macrophages spread less than WT. Patch-clamping revealed that the spreading defect is a result of the failure of PKC-ε⁻/⁻ macrophages to add membrane. The defect is specific for FcγR ligation and can be reversed by expression of full-length (but not the isolated RD) PKC-ε in PKC-ε⁻/⁻ BMDM. Thus, PKC-ε function in phagocytosis requires translocation to phagosomes and the catalytic domain. The expression of chimeric PKC molecules in RAW cells identified the εPS as necessary for PKC-ε targeting. When placed into (nonlocalizing) PKC-δ, εPS was sufficient for concentration, albeit to a lesser degree than intact PKC-ε. In contrast, translocation of δ(εPSC1B) resembled that of WT PKC-ε. Thus, εPS and εC1B cooperate for optimal phagosome targeting. Finally, cells expressing εK437W were significantly less phagocytic than their PKC-ε-expressing counterparts, blocked at the pseudopod-extension phase. In summary, we have shown that εPS and εC1B are necessary and sufficient for targeting PKC-ε to phagosomes, where its catalytic activity is required for membrane delivery and pseudopod extension.

摘要

在 RAW 264.7 细胞中,PKC-ε 调节 FcγR 介导的吞噬作用。BMDM 的行为类似;PKC-ε 在吞噬体中浓缩,PKC-ε-/-细胞中的内化减少。提出了两个问题:PKC-ε 的作用是什么?以及 PKC-ε 浓缩所必需的结构域是什么?使用 BMDM 和受挫吞噬作用研究了功能。在 IgG 表面上,PKC-ε-/-巨噬细胞的扩散小于 WT。膜片钳技术揭示,扩散缺陷是由于 PKC-ε-/-巨噬细胞无法添加膜所致。该缺陷是 FcγR 连接的特异性缺陷,可通过在 PKC-ε-/-BMDM 中表达全长(但不是分离的 RD)PKC-ε来逆转。因此,PKC-ε 在吞噬作用中的功能需要易位到吞噬体和催化结构域。在 RAW 细胞中表达嵌合 PKC 分子确定了 εPS 对于 PKC-ε 靶向是必需的。当放入(非定位)PKC-δ 中时,εPS 足以进行浓缩,尽管不如完整的 PKC-ε 程度高。相比之下,δ(εPSC1B)的易位类似于 WT PKC-ε 的易位。因此,εPS 和 εC1B 共同作用以实现最佳的吞噬体靶向。最后,表达 εK437W 的细胞的吞噬作用明显低于其表达 PKC-ε 的对应物,在伪足延伸阶段受阻。总之,我们已经表明,εPS 和 εC1B 是将 PKC-ε 靶向到吞噬体所必需和充分的,其催化活性是用于膜传递和伪足延伸的必需的。

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