De novo sequencing of two novel peptides homologous to calcitonin-like peptides, from skin secretion of the Chinese Frog, Odorrana schmackeri

Q4 Biochemistry, Genetics and Molecular Biology
Geisa P.C. Evaristo , Martijn W.H. Pinkse , Tianbao Chen , Lei Wang , Shabaz Mohammed , Albert J.R. Heck , Isabella Mathes , Friedrich Lottspeich , Chris Shaw , Juan Pablo Albar , Peter D.E.M. Verhaert
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引用次数: 2

Abstract

An MS/MS based analytical strategy was followed to solve the complete sequence of two new peptides from frog (Odorrana schmackeri) skin secretion. This involved reduction and alkylation with two different alkylating agents followed by high resolution tandem mass spectrometry. De novo sequencing was achieved by complementary CID and ETD fragmentations of full-length peptides and of selected tryptic fragments. Heavy and light isotope dimethyl labeling assisted with annotation of sequence ion series. The identified primary structures are GCD[I/L]STCATHN[I/L]VNE[I/L]NKFDKSKPSSGGVGPESP-NH2 and SCNLSTCATHNLVNELNKFDKSKPSSGGVGPESF-NH2, i.e. two carboxyamidated 34 residue peptides with an aminoterminal intramolecular ring structure formed by a disulfide bridge between Cys2 and Cys7. Edman degradation analysis of the second peptide positively confirmed the exact sequence, resolving I/L discriminations. Both peptide sequences are novel and share homology with calcitonin, calcitonin gene related peptide (CGRP) and adrenomedullin from other vertebrates. Detailed sequence analysis as well as the 34 residue length of both O. schmackeri peptides, suggest they do not fully qualify as either calcitonins (32 residues) or CGRPs (37 amino acids) and may justify their classification in a novel peptide family within the calcitonin gene related peptide superfamily. Smooth muscle contractility assays with synthetic replicas of the S–S linked peptides on rat tail artery, uterus, bladder and ileum did not reveal myotropic activity.

Abstract Image

中国蛙皮肤分泌物中两个与降钙素样肽同源的新肽的从头测序
采用质谱/质谱分析方法,对蛙(Odorrana schmackeri)皮肤分泌物中两个新肽的完整序列进行了分析。这涉及还原和烷基化与两种不同的烷基化剂随后高分辨率串联质谱。从头测序是通过全长肽和选定的色氨酸片段的互补CID和ETD片段实现的。重、轻同位素二甲基标记辅助序列离子序列标注。所鉴定的一级结构为GCD[I/L]STCATHN[I/L]VNE[I/L] nkfdkskpssggvgpesf - nh2和SCNLSTCATHNLVNELNKFDKSKPSSGGVGPESF-NH2,即两个羧基化的34位残基肽,在Cys2和Cys7之间通过二硫桥接形成氨基端分子内环结构。第二肽的Edman降解分析阳性地确认了确切的序列,解决了I/L的区分。这两个肽序列都是新的,与其他脊椎动物的降钙素、降钙素基因相关肽(CGRP)和肾上腺髓质素具有同源性。详细的序列分析以及这两种O. schmackeri肽的34个残基长度表明,它们不完全符合降钙素(32个残基)或CGRPs(37个氨基酸)的资格,并可能证明它们在降钙素基因相关肽超家族中的新肽家族中的分类是合理的。S-S连接肽合成复制品在大鼠尾动脉、子宫、膀胱和回肠上的平滑肌收缩性试验未显示出致肌活性。
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来源期刊
EuPA Open Proteomics
EuPA Open Proteomics Biochemistry, Genetics and Molecular Biology-Biochemistry
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