Suppr超能文献

在太平洋岩蟹(Cancer productus)联合神经节中对一个含速激肽神经内分泌器官的鉴定与表征。

Identification and characterization of a tachykinin-containing neuroendocrine organ in the commissural ganglion of the crab Cancer productus.

作者信息

Messinger Daniel I, Kutz Kimberly K, Le Thuc, Verley Derek R, Hsu Yun-Wei A, Ngo Christina T, Cain Shaun D, Birmingham John T, Li Lingjun, Christie Andrew E

机构信息

Department of Biology, University of Washington, Box 351800, Seattle, WA 98195-1800, USA.

出版信息

J Exp Biol. 2005 Sep;208(Pt 17):3303-19. doi: 10.1242/jeb.01787.

Abstract

A club-shaped, tachykinin-immunopositive structure first described nearly two decades ago in the commissural ganglion (CoG) of three species of decapod crustaceans has remained enigmatic, as its function is unknown. Here, we use a combination of anatomical, mass spectrometric and electrophysiological techniques to address this issue in the crab Cancer productus. Immunohistochemistry using an antibody to the vertebrate tachykinin substance P shows that a homologous site exists in each CoG of this crab. Confocal microscopy reveals that its structure and organization are similar to those of known neuroendocrine organs. Based on its location in the anterior medial quadrant of the CoG, we have named this structure the anterior commissural organ (ACO). Matrix-assisted laser desorption/ionization Fourier transform mass spectrometry shows that the ACO contains the peptide APSGFLGMRamide, commonly known as Cancer borealis tachykinin-related peptide Ia (CabTRP Ia). Using the same technique, we show that CabTRP Ia is also released into the hemolymph. As no tachykinin-like labeling is seen in any of the other known neuroendocrine sites of this species (i.e. the sinus gland, the pericardial organ and the anterior cardiac plexus), the ACO is a prime candidate to be the source of CabTRP Ia present in the circulatory system. Our electrophysiological studies indicate that one target of hemolymph-borne CabTRP Ia is the foregut musculature. Here, no direct CabTRP Ia innervation is present, yet several gastric mill and pyloric muscles are nonetheless modulated by hormonally relevant concentrations of the peptide. Collectively, our findings show that the C. productus ACO is a neuroendocrine organ providing hormonal CabTRP Ia modulation to the foregut musculature. Homologous structures in other decapods are hypothesized to function similarly.

摘要

一种棒状、速激肽免疫阳性结构早在近二十年前就在三种十足目甲壳动物的连合神经节(CoG)中被首次描述,但由于其功能未知,它一直是个谜。在这里,我们结合解剖学、质谱分析和电生理技术来解决蟹类太平洋蝉蟹(Cancer productus)中的这个问题。使用针对脊椎动物速激肽P物质的抗体进行免疫组织化学分析表明,这种蟹的每个CoG中都存在一个同源位点。共聚焦显微镜显示其结构和组织与已知神经内分泌器官的相似。基于其在CoG前内侧象限的位置,我们将这个结构命名为前连合器官(ACO)。基质辅助激光解吸/电离傅里叶变换质谱分析表明,ACO含有肽APSGFLGMRamide,通常称为北方蟹速激肽相关肽Ia(CabTRP Ia)。使用相同技术,我们表明CabTRP Ia也释放到血淋巴中。由于在该物种的任何其他已知神经内分泌部位(即窦腺、围心器官和前心脏神经丛)均未观察到速激肽样标记,因此ACO是循环系统中存在的CabTRP Ia的主要来源候选者。我们的电生理研究表明,血淋巴中携带的CabTRP Ia的一个靶标是前肠肌肉组织。在这里,不存在直接的CabTRP Ia神经支配,但几种胃磨和幽门肌肉仍受到该肽的激素相关浓度的调节。总体而言,我们的研究结果表明,太平洋蝉蟹ACO是一个神经内分泌器官,为前肠肌肉组织提供激素性CabTRP Ia调节。其他十足目中的同源结构被推测具有类似功能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验