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北方黄道蟹温度变化影响的定量神经肽组学研究

Quantitative neuropeptidomics study of the effects of temperature change in the crab Cancer borealis.

作者信息

Chen Ruibing, Xiao Mingming, Buchberger Amanda, Li Lingjun

机构信息

Research Center of Basic Medical Sciences, Tianjin Medical University , Tianjin 300070, China.

出版信息

J Proteome Res. 2014 Dec 5;13(12):5767-76. doi: 10.1021/pr500742q. Epub 2014 Sep 29.

Abstract

Temperature changes influence the reaction rates of all biological processes, which can pose dramatic challenges to cold-blooded organisms, and the capability to adapt to temperature fluctuations is crucial for the survival of these animals. In order to understand the roles that neuropeptides play in the temperature stress response, we employed a mass spectrometry-based approach to investigate the neuropeptide changes associated with acute temperature elevation in three neural tissues from the Jonah crab Cancer borealis. At high temperature, members from two neuropeptide families, including RFamide and RYamide, were observed to be significantly reduced in one of the neuroendocrine structures, the pericardial organ, while several orcokinin peptides were detected to be decreased in another major neuroendocrine organ, the sinus gland. These results implicate that the observed neuropeptides may be involved with temperature perturbation response via hormonal regulation. Furthermore, a temperature stress marker peptide with the primary sequence of SFRRMGGKAQ (m/z 1137.7) was detected and de novo sequenced in the circulating fluid (hemolymph) from animals under thermal perturbation.

摘要

温度变化会影响所有生物过程的反应速率,这可能给冷血生物带来巨大挑战,而适应温度波动的能力对这些动物的生存至关重要。为了了解神经肽在温度应激反应中所起的作用,我们采用了一种基于质谱的方法,来研究与北方黄道蟹(Cancer borealis)三种神经组织中急性温度升高相关的神经肽变化。在高温下,在其中一个神经内分泌结构即围心器官中,观察到包括RFamide和RYamide在内的两个神经肽家族的成员显著减少,而在另一个主要神经内分泌器官即窦腺中,检测到几种章鱼神经肽减少。这些结果表明,所观察到的神经肽可能通过激素调节参与温度扰动反应。此外,在热扰动下动物的循环液(血淋巴)中检测到一种一级序列为SFRRMGGKAQ(m/z 1137.7)的温度应激标记肽,并对其进行了从头测序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89d6/4261957/bc7cc5abaf8e/pr-2014-00742q_0001.jpg

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