the Possible role interaction between cannabinoid and TRPC3, TRPC6 and TRPV2 in behavioral process

Farzaneh Najar, M. Nasehi, S. Haeri-Rohani, M. Zarrindast
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Abstract

Most studies have found that changes in concentration of intracellular ions can change cell activation.   Calcium ion is one of the most vital one of these ions which is the most vital second messenger within cells. Ca2+ is necessary for a wide range of cellular processes such as cell proliferation, muscle contraction and exocytosis and apoptosis. Different kinds of TRPCs (transient receptor potential cation channels) have a wide range of activity in cell but are known as Ca2+ blocker channel.  On the other hand, cannabinoids are a class of different chemical compounds that act on cannabinoid receptors in cells that suppress neurotransmitter release in the brain. Ligands for these receptor proteins consist of  endocannabinoids (produced naturally in the body of humans and animals), the phytocannabinoids (exist in cannabis and some other plants), and synthetic cannabinoids (artificially made). The most important cannabinoid is the phytocannabinoid tetrahydrocannabinol (THC), the primary psychoactive compound of cannabis. Cannabidiol (CBD) is another major part of the plant. It is showed that endocannabinoid biosynthesis is a calcium-dependent process, though the physiological source of calcium is not identified. Many of biochemical experiments have been investigating the contributions of extracellular and intracellular calcium in the biosynthetic process. Some studies found that extracellular calcium is a vital factor for the endogenous cannabinoids biosynthesis, while a simply releasing intracellular calcium store such as endoplasmic reticulum does not have an effect on endocannabinoid biosynthesis. In addition to introduction of cannabinoid, blocker of Ca2+ channel (TRPC) and investigating interaction among them in this review, the possible role of cannabinoid and TRPC3, TRPC6 and TRPV2 in behavioral process are induced in conclusion.
大麻素与TRPC3、TRPC6和TRPV2在行为过程中可能的作用相互作用
大多数研究发现,细胞内离子浓度的变化可以改变细胞的活化。钙离子是这些离子中最重要的一种它是细胞内最重要的第二信使。Ca2+是广泛的细胞过程所必需的,如细胞增殖、肌肉收缩、胞吐和凋亡。不同类型的瞬时受体电位阳离子通道在细胞内具有广泛的活性,但被称为Ca2+阻断剂通道。另一方面,大麻素是一类不同的化合物,作用于细胞中的大麻素受体,抑制大脑中神经递质的释放。这些受体蛋白的配体由内源性大麻素(在人类和动物体内自然产生)、植物大麻素(存在于大麻和其他一些植物中)和合成大麻素(人工制造)组成。最重要的大麻素是植物大麻素四氢大麻酚(THC),大麻的主要精神活性化合物。大麻二酚(CBD)是这种植物的另一个主要成分。研究表明,内源性大麻素的生物合成是一个钙依赖的过程,尽管钙的生理来源尚未确定。许多生物化学实验都在研究细胞外钙和细胞内钙在生物合成过程中的作用。一些研究发现,细胞外钙是内源性大麻素生物合成的重要因素,而单纯释放细胞内钙储存如内质网对内源性大麻素生物合成没有影响。本文除了介绍了大麻素、钙离子通道阻断剂(TRPC)及其相互作用外,还归纳了大麻素与TRPC3、TRPC6和TRPV2在行为过程中的可能作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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