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Slob,一种行动迟缓的通道结合蛋白,调节突触传递。

Slob, a Slowpoke channel-binding protein, modulates synaptic transmission.

机构信息

Department of Neuroscience, Thomas Jefferson University, Philadelphia, PA 19107, USA.

出版信息

J Gen Physiol. 2011 Feb;137(2):225-38. doi: 10.1085/jgp.201010439.

Abstract

Modulation of ion channels by regulatory proteins within the same macromolecular complex is a well-accepted concept, but the physiological consequences of such modulation are not fully understood. Slowpoke (Slo), a potassium channel critical for action potential repolarization and transmitter release, is regulated by Slo channel-binding protein (Slob), a Drosophila melanogaster Slo (dSlo) binding partner. Slob modulates the voltage dependence of dSlo channel activation in vitro and exerts similar effects on the dSlo channel in Drosophila central nervous system neurons in vivo. In addition, Slob modulates action potential duration in these neurons. Here, we investigate further the functional consequences of the modulation of the dSlo channel by Slob in vivo, by examining larval neuromuscular synaptic transmission in flies in which Slob levels have been altered. In Slob-null flies generated through P-element mutagenesis, as well as in Slob knockdown flies generated by RNA interference (RNAi), we find an enhancement of synaptic transmission but no change in the properties of the postsynaptic muscle cell. Using targeted transgenic rescue and targeted expression of Slob-RNAi, we find that Slob expression in neurons (but not in the postsynaptic muscle cell) is critical for its effects on synaptic transmission. Furthermore, inhibition of dSlo channel activity abolishes these effects of Slob. These results suggest that presynaptic Slob, by regulating dSlo channel function, participates in the modulation of synaptic transmission.

摘要

调节同一大分子复合物内的调节蛋白的离子通道是一个被广泛接受的概念,但这种调节的生理后果尚不完全清楚。Slowpoke(Slo)是一种对动作电位复极化和递质释放至关重要的钾通道,受 Slo 通道结合蛋白(Slob)调节,Slob 是果蝇 Slo(dSlo)的结合伴侣。Slob 在体外调节 dSlo 通道的激活电压依赖性,并对体内果蝇中枢神经系统神经元中的 dSlo 通道产生类似的影响。此外,Slob 调节这些神经元中的动作电位持续时间。在这里,我们通过检查 Slob 水平改变的果蝇幼虫肌肉神经突触传递,进一步研究 Slob 在体内调节 dSlo 通道的功能后果。通过 P 元件诱变产生的 Slob 缺失果蝇,以及通过 RNA 干扰(RNAi)产生的 Slob 敲低果蝇,我们发现突触传递增强,但突触后肌细胞的特性没有变化。使用靶向转基因拯救和靶向 Slob-RNAi 表达,我们发现神经元中的 Slob 表达(而不是突触后肌细胞)对于其对突触传递的影响至关重要。此外,抑制 dSlo 通道活性消除了 Slob 的这些作用。这些结果表明,通过调节 dSlo 通道功能,突触前 Slob 参与了突触传递的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc24/3032372/9faa16467308/JGP_201010439_GS_Fig1.jpg

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