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味觉上皮中S100B调节的Ca2+依赖性ROS-GC1转导机制:味觉转导的新机制。

S100B-modulated Ca2+-dependent ROS-GC1 transduction machinery in the gustatory epithelium: a new mechanism in gustatory transduction.

作者信息

Duda Teresa, Sharma Rameshwar K

机构信息

The Unit of Regulatory and Molecular Biology, Department of Cell Biology, SOM & NJMS, University of Medicine and Dentistry of New Jersey, Stratford, NJ 08084, USA.

出版信息

FEBS Lett. 2004 Nov 19;577(3):393-8. doi: 10.1016/j.febslet.2004.09.089.

Abstract

Gustatory transduction is a biochemical process by which the gustatory signal generates the electric signal. The microvilli of the taste cells in the gustatory epithelium are the sites of gustatory transduction. This study documents the biochemical, molecular, and functional identity of the Ca2+-modulated membrane guanylate cyclase transduction machinery in the bovine gustatory epithelium. The machinery is a two-component system: the Ca2+-sensor protein, S100B; and the transducer, ROS-GC1. S100B senses increments in free Ca2+, undergoes conformational change, binds to the domain amino acids (aa) Gly962-Asn981 and via the transduction domain aa Ile1030-Gln1041 activates ROS-GC1, generating the second messenger, cyclic GMP. In a recent study, operational presence of this machinery has been demonstrated in the photoreceptor bipolar synapse [Duda et al., EMBO J. 21 (2002) 2547]. Thus, the machinery has a broader role in sensory perceptions, vision in the retinal neurons and gustation in the tongue. The entry of the ROS-GC transduction machinery defines the beginning of a new paradigm of Ca2+ signaling in the tongue.

摘要

味觉转导是一种生化过程,通过该过程味觉信号产生电信号。味觉上皮中味觉细胞的微绒毛是味觉转导的部位。本研究记录了牛味觉上皮中Ca2+调节的膜鸟苷酸环化酶转导机制的生化、分子和功能特性。该机制是一个双组分系统:Ca2+传感器蛋白S100B和转导器ROS-GC1。S100B感知游离Ca2+的增加,发生构象变化,与结构域氨基酸(aa)Gly962-Asn981结合,并通过转导结构域氨基酸Ile1030-Gln1041激活ROS-GC1,产生第二信使环鸟苷酸(cGMP)。在最近的一项研究中,已在光感受器双极突触中证明了该机制的存在[Duda等人,《欧洲分子生物学组织杂志》21(2002年)2547]。因此,该机制在感觉认知、视网膜神经元的视觉和舌头的味觉中具有更广泛的作用。ROS-GC转导机制的进入定义了舌头中Ca2+信号传导新范式的开始。

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