Brauchi Sebastian, Orta Gerardo, Mascayano Carolina, Salazar Marcelo, Raddatz Natalia, Urbina Hector, Rosenmann Eduardo, Gonzalez-Nilo Fernando, Latorre Ramon
Laboratory of Biophysics and Molecular Physiology, Centro de Estudios Cientificos, Valdivia 509-9100, Chile.
Proc Natl Acad Sci U S A. 2007 Jun 12;104(24):10246-51. doi: 10.1073/pnas.0703420104. Epub 2007 Jun 4.
Phosphatidylinositol 4,5-bisphosphate (PIP2) plays a central role in the activation of several transient receptor potential (TRP) channels. The role of PIP2 on temperature gating of thermoTRP channels has not been explored in detail, and the process of temperature activation is largely unexplained. In this work, we have exchanged different segments of the C-terminal region between cold-sensitive (TRPM8) and heat-sensitive (TRPV1) channels, trying to understand the role of the segment in PIP2 and temperature activation. A chimera in which the proximal part of the C-terminal of TRPV1 replaces an equivalent section of TRPM8 C-terminal is activated by PIP2 and confers the phenotype of heat activation. PIP2, but not temperature sensitivity, disappears when positively charged residues contained in the exchanged region are neutralized. Shortening the exchanged segment to a length of 11 aa produces voltage-dependent and temperature-insensitive channels. Our findings suggest the existence of different activation domains for temperature, PIP2, and voltage. We provide an interpretation for channel-PIP2 interaction using a full-atom molecular model of TRPV1 and PIP2 docking analysis.
磷脂酰肌醇4,5-二磷酸(PIP2)在多种瞬时受体电位(TRP)通道的激活中起核心作用。PIP2在热TRP通道温度门控中的作用尚未得到详细研究,温度激活过程在很大程度上也未得到解释。在这项工作中,我们交换了冷敏(TRPM8)和热敏(TRPV1)通道C末端区域的不同片段,试图了解该片段在PIP2和温度激活中的作用。一种嵌合体,其中TRPV1 C末端的近端部分取代了TRPM8 C末端的等效部分,被PIP2激活并赋予热激活表型。当交换区域中含有的带正电荷残基被中和时,PIP2(而非温度敏感性)消失。将交换片段缩短至11个氨基酸的长度会产生电压依赖性且对温度不敏感的通道。我们的研究结果表明存在针对温度、PIP2和电压的不同激活域。我们使用TRPV1的全原子分子模型和PIP2对接分析对通道 - PIP2相互作用进行了解释。