Zhang Yuzhuo, Buchberger Amanda, Muthuvel Gajanthan, Li Lingjun
School of Pharmacy, University of Wisconsin-Madison, Madison, WI, USA.
Department of Chemistry, University of Wisconsin-Madison, Madison, WI, USA.
Proteomics. 2015 Dec;15(23-24):3969-79. doi: 10.1002/pmic.201500256. Epub 2015 Nov 23.
Environmental fluctuations, such as salinity, impose serious challenges to marine animal survival. Neuropeptides, signaling molecules involved in the regulation process, and the dynamic changes of their full complement in the stress response have yet to be investigated. Here, a MALDI-MS-based stable isotope labeling quantitation strategy was used to investigate the relationship between neuropeptide expression and adaptability of Carcinus maenas to various salinity levels, including high (60 parts per thousand [p.p.t.]) and low (0 p.p.t.) salinity, in both the crustacean pericardial organ (PO) and brain. Moreover, a high salinity stress time course study was conducted. MS imaging (MSI) of neuropeptide localization in C. maenas PO was also performed. As a result of salinity stress, multiple neuropeptide families exhibited changes in their relative abundances, including RFamides (e.g. APQGNFLRFamide), RYamides (e.g. SSFRVGGSRYamide), B-type allatostatins (AST-B; e.g. VPNDWAHFRGSWamide), and orcokinins (e.g. NFDEIDRSSFGFV). The MSI data revealed distribution differences in several neuropeptides (e.g. SGFYANRYamide) between color morphs, but salinity stress appeared to not have a major effect on the localization of the neuropeptides.
环境波动,如盐度变化,对海洋动物的生存构成严峻挑战。神经肽作为参与调节过程的信号分子,其在应激反应中的全量动态变化尚待研究。在此,采用基于基质辅助激光解吸电离质谱(MALDI-MS)的稳定同位素标记定量策略,研究了海滨黄道蟹(Carcinus maenas)的神经肽表达与适应不同盐度水平(包括高盐度(60‰)和低盐度(0‰))之间的关系,研究对象包括甲壳类动物的心包器官(PO)和脑。此外,还进行了高盐度应激时间进程研究。同时,对海滨黄道蟹心包器官中神经肽定位进行了质谱成像(MSI)分析。盐度应激导致多个神经肽家族的相对丰度发生变化,包括RFamides(如APQGNFLRFamide)、RYamides(如SSFRVGGSRYamide)、B型咽侧体抑制素(AST-B;如VPNDWAHFRGSWamide)和orcokinins(如NFDEIDRSSFGFV)。质谱成像数据显示,几种神经肽(如SGFYANRYamide)在不同颜色形态之间存在分布差异,但盐度应激似乎对神经肽的定位没有重大影响。