Department of Pharmacology, University of Cambridge, Cambridge CB2 1PD, UK.
J Physiol. 2010 Oct 1;588(Pt 19):3743-56. doi: 10.1113/jphysiol.2010.190611. Epub 2010 Aug 6.
Activation of TRPV1, the heat and capsaicin receptor, is known to be promoted by phosphorylation, but the molecular details are unclear. In the present study we recorded from single TRPV1 ion channels using the cell-attached patch clamp technique. The influence of capsaicin concentration on the time constants of open and closed states demonstrates the existence of at least four closed and three open states, and shows that channel opening can occur from partially liganded states. Activation of protein kinase C (PKC) promotes channel opening in some channels but not others, consistent with some channels being inaccessible to the kinase. The changes in open and closed state time constants following activation of PKC are equivalent to an increased affinity of capsaicin binding, but other arguments suggest that channel opening must be potentiated by downstream changes in channel activation rather than by a direct action of phosphorylation on the capsaicin binding site. Mutation of functionally important PKC phosphorylation sites on TRPV1, or application of staurosporine, a broad-spectrum kinase inhibitor, completely inhibited the effect of PKC in enhancing channel open time. Staurosporine also inhibited channel activity in the absence of overt PKC activation, showing that TRPV1 is partially phosphorylated at rest. This study elucidates the mechanism by which phosphorylation by PKC potentiates the activation of single TRPV1 ion channels.
TRPV1 是一种热和辣椒素受体,其激活已知受到磷酸化的促进,但分子细节尚不清楚。在本研究中,我们使用细胞贴附式膜片钳技术记录单个 TRPV1 离子通道。辣椒素浓度对开放和关闭状态时间常数的影响表明至少存在四个关闭状态和三个开放状态,并且表明通道开放可以从部分配体结合状态发生。蛋白激酶 C(PKC)的激活促进了一些通道但不是其他通道的通道开放,这与一些通道无法被激酶进入一致。PKC 激活后开放和关闭状态时间常数的变化相当于增加了辣椒素结合的亲和力,但其他论点表明,通道开放必须通过通道激活的下游变化来增强,而不是通过磷酸化对辣椒素结合位点的直接作用。TRPV1 上具有功能重要性的 PKC 磷酸化位点的突变,或应用广谱激酶抑制剂 staurosporine,完全抑制了 PKC 增强通道开放时间的作用。Staurosporine 也在没有明显 PKC 激活的情况下抑制通道活性,表明 TRPV1 在静息时部分磷酸化。这项研究阐明了 PKC 磷酸化增强单个 TRPV1 离子通道激活的机制。