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一种用于在肥大细胞中转导物理刺激的TRPV2-PKA信号模块。

A TRPV2-PKA signaling module for transduction of physical stimuli in mast cells.

作者信息

Stokes Alexander J, Shimoda Lori M N, Koblan-Huberson Murielle, Adra Chaker N, Turner Helen

机构信息

Center for Biomedical Research, 1301 Punchbowl St., University Tower 8, Honolulu, HI 96813, USA.

出版信息

J Exp Med. 2004 Jul 19;200(2):137-47. doi: 10.1084/jem.20032082. Epub 2004 Jul 12.

Abstract

Cutaneous mast cell responses to physical (thermal, mechanical, or osmotic) stimuli underlie the pathology of physical urticarias. In vitro experiments suggest that mast cells respond directly to these stimuli, implying that a signaling mechanism couples functional responses to physical inputs in mast cells. We asked whether transient receptor potential (vanilloid) (TRPV) cation channels were present and functionally coupled to signaling pathways in mast cells, since expression of this channel subfamily confers sensitivity to thermal, osmotic, and pressure inputs. Transcripts for a range of TRPVs were detected in mast cells, and we report the expression, surface localization, and oligomerization of TRPV2 protein subunits in these cells. We describe the functional coupling of TRPV2 protein to calcium fluxes and proinflammatory degranulation events in mast cells. In addition, we describe a novel protein kinase A (PKA)-dependent signaling module, containing PKA and a putative A kinase adapter protein, Acyl CoA binding domain protein (ACBD)3, that interacts with TRPV2 in mast cells. We propose that regulated phosphorylation by PKA may be a common pathway for TRPV modulation.

摘要

皮肤肥大细胞对物理(热、机械或渗透压)刺激的反应是物理性荨麻疹病理的基础。体外实验表明肥大细胞可直接对这些刺激作出反应,这意味着存在一种信号传导机制将肥大细胞中的功能反应与物理输入相耦合。我们探究了瞬时受体电位(香草酸亚家族)(TRPV)阳离子通道是否存在于肥大细胞中并与信号通路功能耦合,因为该通道亚家族的表达赋予了对热、渗透压和压力输入的敏感性。在肥大细胞中检测到了一系列TRPV的转录本,并且我们报道了这些细胞中TRPV2蛋白亚基的表达、表面定位和寡聚化。我们描述了TRPV2蛋白与肥大细胞中钙通量和促炎脱颗粒事件的功能耦合。此外,我们描述了一种新型的蛋白激酶A(PKA)依赖性信号传导模块,其包含PKA和一种假定的A激酶衔接蛋白,即酰基辅酶A结合域蛋白(ACBD)3,该模块在肥大细胞中与TRPV2相互作用。我们提出PKA介导的磷酸化调节可能是TRPV调节的常见途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88e0/2212017/3319530bd6f0/20032082f1.jpg

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