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首页> 外文期刊>Brain research >HPLC and electrospray ionization mass spectrometry as tools for the identification of APGWamide-related peptides in gastropod and bivalve mollusks: comparative activities on Mytilus muscles.
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HPLC and electrospray ionization mass spectrometry as tools for the identification of APGWamide-related peptides in gastropod and bivalve mollusks: comparative activities on Mytilus muscles.

机译:HPLC和电喷雾电离质谱法作为鉴定腹足动物和双壳贝类软体动物中APGW酰胺相关肽的工具:对Mytilus肌肉的比较活性。

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The APGWamide-related neuropeptides, predicted by the cDNA of the APGWamide precursor of Mytilus edulis, have been sought by means of HPLC and electrospray mass ionization. The three predicted peptides KPGWamide, RPGWamide and TPGWamide were detected in the three main muscles and surprisingly an ion at m/z 429 corresponding to the gastropod peptide APGWamide was also demonstrated. Similar investigations performed in Lymnaea stagnalis central nervous system (CNS) revealed the occurrence of mussel APGWamide-related peptides (APGWamide-RPs) demonstrating for the first time the presence and the expression of the two precursors in both gastropod and bivalve mollusks. The absence of homologous domain in the Mytilus precursor [P. Favrel, M. Mathieu, Molecular cloning of a cDNA encoding the precursor of Ala-Pro-Gly-Trp-amide related neuropeptides from the bivalve Mytilus edulis. Neurosci. Lett. 1996;205:210-214] and the Lymnaea precursor [A.B. Smit, C.R. Jimenez, R.W. Dirks, R.P. Croll, W.P.M. Geraerts, Characterization of cDNA clone encoding multiple copies of the neuropeptide APGWamide in the molluscs Lymnaea stagnalis. J. Neurosci. 1992;12:1709-1715] eliminates the hypothesis of an alternative splicing of a single gene and suggests the likelihood of two genes probably resulting from duplication of an ancestral gene before the divergence between gastropods and bivalves. The similar potency observed on contraction assay and the differential distribution of the various peptides suggest that they may exert distinct activities on multiple targets.
机译:已经通过HPLC和电喷雾质量电离法寻求了由紫贻贝(Mytilus edulis)的APGW酰胺前体的cDNA预测的与APGW酰胺相关的神经肽。在三个主要肌肉中检测到三种预测的肽KPGWamide,RPGWamide和TPGWamide,并且令人惊讶的是,在m / z 429处还显示了与腹足动物肽APGWamide相对应的离子。在田鼠中枢神经系统(CNS)中进行的类似研究表明,贻贝APGWamide相关肽(APGWamide-RPs)的出现首次证明了两种前体在腹足类和双壳类软体动物中的存在和表达。 Mytilus前体中没有同源结构域[P. Favrel,M.Mathieu,cDNA的分子克隆,该cDNA编码来自双壳贝类Mytilus紫草的Ala-Pro-Gly-Trp-酰胺相关的神经肽的前体。神经科学。来吧1996; 205:210-214]和Lymnaea前体[A.B. Smit,C.R. Jimenez,R.W. Dirks,R.P. Croll,W.P.M. Geraerts,在软体动物剑叶盲Ly中编码神经肽APGWamide多个副本的cDNA克隆的表征。 J.神经科学。 [1992; 12:1709-1715]消除了单个基因的可变剪接的假设,并提出了两个基因的可能性,可能是由于在腹足类和双壳类之间的分歧之前祖先基因的重复。在收缩测定中观察到的相似效力以及各种肽的差异分布表明它们可能在多个靶标上发挥不同的活性。

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