Bahia Parmvir K, Parks Thomas A, Stanford Katherine R, Mitchell David A, Varma Sameer, Stevens Stanley M, Taylor-Clark Thomas E
Department of Molecular Pharmacology and Physiology, Morsani College of Medicine, University of South Florida, Tampa, FL 33612.
Department of Molecular Medicine, Morsani College of Medicine, University of South Florida, Tampa, FL 33612.
J Gen Physiol. 2016 Jun;147(6):451-65. doi: 10.1085/jgp.201611581.
Activation of the sensory nerve ion channel TRPA1 by electrophiles is the key mechanism that initiates nociceptive signaling, and leads to defensive reflexes and avoidance behaviors, during oxidative stress in mammals. TRPA1 is rapidly activated by subtoxic levels of electrophiles, but it is unclear how TRPA1 outcompetes cellular antioxidants that protect cytosolic proteins from electrophiles. Here, using physiologically relevant exposures, we demonstrate that electrophiles react with cysteine residues on mammalian TRPA1 at rates that exceed the reactivity of typical cysteines by 6,000-fold and that also exceed the reactivity of antioxidant enzymes. We show that TRPA1 possesses a complex reactive cysteine profile in which C621 is necessary for electrophile-induced binding and activation. Modeling of deprotonation energies suggests that K620 contributes to C621 reactivity and mutation of K620 alone greatly reduces the effect of electrophiles on TRPA1. Nevertheless, binding of electrophiles to C621 is not sufficient for activation, which also depends on the function of another reactive cysteine (C665). Together, our results demonstrate that TRPA1 acts as an effective electrophilic sensor because of the exceptionally high reactivity of C621.
亲电试剂激活感觉神经离子通道TRPA1是在哺乳动物氧化应激期间启动伤害性信号传导并导致防御反射和回避行为的关键机制。TRPA1可被亚毒性水平的亲电试剂快速激活,但尚不清楚TRPA1如何胜过保护胞质蛋白免受亲电试剂影响的细胞抗氧化剂。在这里,通过使用生理相关暴露,我们证明亲电试剂与哺乳动物TRPA1上的半胱氨酸残基反应的速率比典型半胱氨酸的反应性高6000倍,并且也超过抗氧化酶的反应性。我们表明TRPA1具有复杂的反应性半胱氨酸谱,其中C621对于亲电试剂诱导的结合和激活是必需的。去质子化能量的模型表明K620有助于C621的反应性,单独突变K620会大大降低亲电试剂对TRPA1的影响。然而,亲电试剂与C621的结合不足以激活,这还取决于另一个反应性半胱氨酸(C665)的功能。总之,我们的结果表明,由于C621具有异常高的反应性,TRPA1可作为一种有效的亲电传感器。