Parnas Moshe, Katz Ben, Minke Baruch
Department of Physiology and the Kühne Minerva Center for Studies of Visual Transduction, Faculty of Medicine, Hebrew University, Jerusalem 91120, Israel.
J Gen Physiol. 2007 Jan;129(1):17-28. doi: 10.1085/jgp.200609659.
The light-activated channels of Drosophila photoreceptors transient receptor potential (TRP) and TRP-like (TRPL) show voltage-dependent conductance during illumination. Recent studies implied that mammalian members of the TRP family, which belong to the TRPV and TRPM subfamilies, are intrinsically voltage-gated channels. However, it is unclear whether the Drosophila TRPs, which belong to the TRPC subfamily, share the same voltage-dependent gating mechanism. Exploring the voltage dependence of Drosophila TRPL expressed in S2 cells, we found that the voltage dependence of this channel is not an intrinsic property since it became linear upon removal of divalent cations. We further found that Ca(2+) blocked TRPL in a voltage-dependent manner by an open channel block mechanism, which determines the frequency of channel openings and constitutes the sole parameter that underlies its voltage dependence. Whole cell recordings from a Drosophila mutant expressing only TRPL indicated that Ca(2+) block also accounts for the voltage dependence of the native TRPL channels. The open channel block by Ca(2+) that we characterized is a useful mechanism to improve the signal to noise ratio of the response to intense light when virtually all the large conductance TRPL channels are blocked and only the low conductance TRP channels with lower Ca(2+) affinity are active.
果蝇光感受器的光激活通道瞬时受体电位(TRP)和类TRP(TRPL)在光照期间表现出电压依赖性电导。最近的研究表明,属于TRPV和TRPM亚家族的TRP家族的哺乳动物成员是内在电压门控通道。然而,尚不清楚属于TRPC亚家族的果蝇TRP是否具有相同的电压依赖性门控机制。通过探索在S2细胞中表达的果蝇TRPL的电压依赖性,我们发现该通道的电压依赖性不是其内在特性,因为去除二价阳离子后它变为线性。我们进一步发现,Ca(2+)通过开放通道阻断机制以电压依赖性方式阻断TRPL,该机制决定通道开放的频率,并构成其电压依赖性的唯一参数。对仅表达TRPL的果蝇突变体进行的全细胞记录表明,Ca(2+)阻断也解释了天然TRPL通道的电压依赖性。我们所描述的Ca(2+)对开放通道的阻断是一种有用的机制,当几乎所有大电导的TRPL通道都被阻断且只有具有较低Ca(2+)亲和力的低电导TRP通道活跃时,可提高对强光反应的信噪比。