神经肽。

Chris Li, Kyuhyung Kim
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引用次数: 121

摘要

神经肽在调节行为中的作用正在慢慢被阐明。通过对秀丽隐杆线虫基因组的测序,可以确定秀丽隐杆线虫神经肽基因的分布程度。迄今为止,已经确定了113个神经肽基因,编码超过250种不同的神经肽。其中,40个基因编码胰岛素样肽,31个基因编码fmrfamide相关肽,42个基因编码非胰岛素、非fmrfamide相关神经肽。与其他系统一样,秀丽隐杆线虫的神经肽来源于前体分子,这些前体分子必须经过翻译后加工才能产生活性肽。这些前体分子含有单个肽、单个肽的多个拷贝、多个不同的肽或其任何组合。神经肽基因在整个神经系统中广泛表达,包括感觉神经元、运动神经元和中间神经元。此外,一些基因也在非神经元组织中表达,如体细胞性腺、肠和外阴皮下组织。为了解决神经肽对秀丽隐杆线虫行为的影响,正在分离不同神经肽基因失活或过表达的动物。在一种互补的方法中,神经肽结合的受体也被识别和检查。在目前分析的基因敲除动物中,已经报道了在运动、细胞形成、产卵、乙醇反应和社会行为方面的缺陷。这些数据表明神经肽在秀丽隐杆线虫的许多(如果不是全部的话)行为中具有调节作用。
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Neuropeptides.

The role of neuropeptides in modulating behavior is slowly being elucidated. With the sequencing of the C. elegans genome, the extent of the neuropeptide genes in C. elegans can be determined. To date, 113 neuropeptide genes encoding over 250 distinct neuropeptides have been identified. Of these, 40 genes encode insulin-like peptides, 31 genes encode FMRFamide-related peptides, and 42 genes encode non-insulin, non-FMRFamide-related neuropeptides. As in other systems, C. elegans neuropeptides are derived from precursor molecules that must be post-translationally processed to yield the active peptides. These precursor molecules contain a single peptide, multiple copies of a single peptide, multiple distinct peptides, or any combination thereof. The neuropeptide genes are expressed extensively throughout the nervous system, including in sensory, motor, and interneurons. In addition, some of the genes are also expressed in non-neuronal tissues, such as the somatic gonad, intestine, and vulval hypodermis. To address the effects of neuropeptides on C. elegans behavior, animals in which the different neuropeptide genes are inactivated or overexpressed are being isolated. In a complementary approach the receptors to which the neuropeptides bind are also being identified and examined. Among the knockout animals analyzed thus far, defects in locomotion, dauer formation, egg laying, ethanol response, and social behavior have been reported. These data suggest that neuropeptides have a modulatory role in many, if not all, behaviors in C. elegans.

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