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TRP 通道在骨骼肌中的表达、功能及其与疾病的关系。

TRP channels in skeletal muscle: gene expression, function and implications for disease.

机构信息

Institute of Pathophysiology, University of Greifswald, D-17495 Karlsburg, Germany.

出版信息

Adv Exp Med Biol. 2011;704:749-58. doi: 10.1007/978-94-007-0265-3_39.

Abstract

Besides the well known voltage-gated Ca(2+) channels skeletal muscle fibres contain several non-voltage gated Ca(2+) conducting cation channels. They have been physiologically characterized as stretch activated, store operated and Ca(2+) leak channels. TRP channels are good candidates to account for these sarcolemmal channels and Ca(2+) influx pathways or at least contribute to the responsible macromolecular complexes. Several members of the TRPC, TRPV and TRPM subfamilies of TRP channels are expressed in skeletal muscle as shown by RT-PCR, Western blot and immunohistochemistry. The most prominent and consistently found are TRPC1, C3, C4 and C6, TRPV2 and V4 as well as TRPM4 and M7. However, the precise function of individual channels is largely unknown. Linking physiologically characterized channels of the muscle fibre membrane to TRP channel proteins has been a major challenge during the last years. It has been successful only in a few cases and is complicated by the fact that some channels have dual functions in cultured, immature muscle cells and adult fibres. The best characterized TRP channel in skeletal muscle is TRPC1, a small-conductance channel of the sarcolemma. It is needed for Ca(2+) homeostasis during sustained contractile muscle activity. In addition to certain physiological functions TRP channels seem to be involved in the pathomechanisms of muscle disorders. There is a broad body of evidence that dysregulation of Ca(2+) conducting channels plays a key role in the pathomechanism of Duchenne muscular dystrophy. Lack of the cytoskeletal protein dystrophin or δ-sarcoglycan, seems to disturb the function of one or several Ca(2+) channels of the muscle fibre membrane, leading to pathological dystrophic changes. Almost 10 different TRP channels have been detected in skeletal muscle. They seem to be involved in muscle development, Ca(2+) homeostasis, Ca(2+) signalling and in disease progression of certain muscle disorders. However, we are still at the beginning of understanding the impact of TRP channel functions in skeletal muscle.

摘要

除了众所周知的电压门控钙 (Ca(2+)) 通道外,骨骼肌纤维还包含几种非电压门控的 Ca(2+)传导阳离子通道。这些通道已被生理特性鉴定为拉伸激活、储存操作和 Ca(2+)泄漏通道。TRP 通道是解释这些肌膜通道和 Ca(2+)内流途径的良好候选者,或者至少有助于负责的大分子复合物。几种 TRP 通道的 TRPC、TRPV 和 TRPM 亚家族成员已通过 RT-PCR、Western blot 和免疫组织化学在骨骼肌中得到表达。最突出和一致发现的是 TRPC1、C3、C4 和 C6、TRPV2 和 V4 以及 TRPM4 和 M7。然而,个体通道的确切功能在很大程度上仍是未知的。将肌纤维膜的生理特性鉴定的通道与 TRP 通道蛋白联系起来,是过去几年中的一个主要挑战。在少数情况下取得了成功,而且由于一些通道在培养的、未成熟的肌肉细胞和成年纤维中具有双重功能,情况变得更加复杂。在骨骼肌中,研究最充分的 TRP 通道是 TRPC1,一种肌膜的小电导通道。它是持续收缩肌肉活动期间 Ca(2+)稳态所必需的。除了某些生理功能外,TRP 通道似乎还参与了肌肉疾病的病理机制。有大量证据表明,Ca(2+)传导通道的失调在杜氏肌营养不良症的病理机制中起着关键作用。细胞骨架蛋白 dystrophin 或 δ-sarcoglycan 的缺失似乎会干扰肌膜的一种或几种 Ca(2+)通道的功能,导致病理性的肌营养不良变化。在骨骼肌中已经检测到近 10 种不同的 TRP 通道。它们似乎参与了肌肉发育、Ca(2+)稳态、Ca(2+)信号转导以及某些肌肉疾病的疾病进展。然而,我们仍处于理解 TRP 通道在骨骼肌中的功能影响的初期阶段。

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