Favreau Philippe, Cheneval Olivier, Menin Laure, Michalet Sophie, Gaertner Hubert, Principaud Franck, Thai Robert, Ménez André, Bulet Philippe, Stöcklin Reto
Atheris Laboratories, case postale 314, CH-1233 Bernex-Geneva, Switzerland.
Rapid Commun Mass Spectrom. 2007;21(3):406-12. doi: 10.1002/rcm.2853.
We investigated venoms from members of the genus Atheris (Serpentes, Viperidae), namely the rough scale bush viper (Atheris squamigera), the green bush viper (A. chlorechis) and the great lakes bush viper (A. nitschei), using mass spectrometry-based strategies, relying on matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry (MALDI-TOF-MS) and electrospray ionisation tandem mass spectrometry (ESI-MS/MS) with de novo peptide sequencing. We discovered a set of novel peptides with masses in the 2-3 kDa range and containing poly-His and poly-Gly segments (pHpG). Complete primary structural elucidation and confirmation of two sequences by Edman degradation indicated the consensus sequence EDDH(9)GVG(10). Bioinformatic investigations in protein sequence databanks did not show relevant homology with known peptides or proteins. However, a more extensive investigation of data in nucleic acid databases revealed some similarities to the precursor sequences of bradykinin potentiating peptides (BPP) and C-type natriuretic peptides (CNP), agents that are known to affect the cardiovascular system by acting on specific metalloproteases and receptors. The novel pHpG peptides found in Atheris venoms might also act on the cardiovascular system by inhibiting particular metalloproteases, which however remain to be identified.
我们使用基于质谱的策略,依靠基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)和电喷雾电离串联质谱(ESI-MS/MS)以及从头肽测序,研究了角蝰属(蛇亚目,蝰蛇科)成员的毒液,即粗鳞角蝰(Atheris squamigera)、绿角蝰(A. chlorechis)和大湖角蝰(A. nitschei)。我们发现了一组新的肽,其质量在2 - 3 kDa范围内,含有多组氨酸和多组甘氨酸片段(pHpG)。通过埃德曼降解对两个序列进行完整的一级结构解析和确认,结果显示共有序列为EDDH(9)GVG(10)。在蛋白质序列数据库中进行的生物信息学研究未显示与已知肽或蛋白质有相关同源性。然而,对核酸数据库中数据进行更广泛的研究发现,它们与缓激肽增强肽(BPP)和C型利钠肽(CNP)的前体序列有一些相似之处,这些物质已知通过作用于特定的金属蛋白酶和受体来影响心血管系统。在角蝰毒液中发现的新型pHpG肽可能也通过抑制特定的金属蛋白酶来作用于心血管系统,不过这些金属蛋白酶仍有待确定。