Hohage Oliver, Sheldrick William S
Lehrstuhl für Analytische Chemie, Ruhr-Universität Bochum, Universitätsstrasse 150, D-44780 Bochum, Germany.
J Inorg Biochem. 2006 Sep;100(9):1506-13. doi: 10.1016/j.jinorgbio.2006.03.017. Epub 2006 May 16.
The pH- and time-dependent reactions of the antitumor drug cisplatin, cis-[PtCl(2)(NH(3))(2)], with the methionine- and histidine-containing pentapeptides Ac-Met-Gly-His-Gly-Gly-OH, Ac-Met-Gly-Gly-His-Gly-OH and Ac-Gly-Met-Gly-His-Gly-OH (Gly=glycyl, Met=L-methionyl, His=L-histidyl) at 313K have been investigated by high performance liquid chromatography, mass spectrometry and nuclear magnetic resonance. Cisplatin mediates a rapid "downstream" hydrolytic cleavage of the Met-Gly amide bond in weakly acid solution (pH < or =5) for all three peptides, leading to release of H-Gly-His-Gly-Gly-OH, H-Gly-Gly-His-Gly-OH and H-Gly-His-Gly-OH, respectively, and formation of kappa(2)S,N(M) chelate complexes of the methionine-containing residuals Ac-Met-OH or Ac-Gly-Met-OH. An alternative reaction pathway affords tridentate kappa(3)S,N(M),N(imidazole) macrochelates of the original pentapeptide following ammine loss. The downstream cleavage pathway is competitive with the likewise cisplatin-mediated upstream cleavage of the Ac-Gly linkage in the pentapeptide Ac-Gly-Met-Gly-His-Gly-OH. This leads to formation of both the kappa(3)S,N(M),N(G1) complex of H-Gly-Met-Gly-His-Gly-OH due to upstream cleavage and the analogous tridentate complex for H-Gly-Met-OH due to initial downstream loss of H-Gly-His-Gly-OH followed by upstream loss of acetic acid. As downstream cleavage is not observed for Ac-(Gly)(2)-Met-(Gly)(2)-OH under similar conditions, it may be concluded that rapid histidine imidazole substitution of the ammine ligand in trans-position to an anchoring methionine S atom must assist hydrolytic cleavage of the Met-Gly amide bond.
采用高效液相色谱、质谱和核磁共振技术,研究了抗肿瘤药物顺铂(顺式-[PtCl₂(NH₃)₂])在313K下与含蛋氨酸和组氨酸的五肽Ac-Met-Gly-His-Gly-Gly-OH、Ac-Met-Gly-Gly-His-Gly-OH及Ac-Gly-Met-Gly-His-Gly-OH(Gly=甘氨酰,Met=L-蛋氨酰,His=L-组氨酰)发生的pH和时间依赖性反应。对于所有这三种肽,顺铂在弱酸溶液(pH≤5)中介导了Met-Gly酰胺键的快速“下游”水解裂解,分别导致释放出H-Gly-His-Gly-Gly-OH、H-Gly-Gly-His-Gly-OH和H-Gly-His-Gly-OH,并形成含蛋氨酸残基Ac-Met-OH或Ac-Gly-Met-OH的κ²S,N(M)螯合物。另一条反应途径是在氨损失后生成原始五肽的三齿κ³S,N(M),N(咪唑)大环螯合物。下游裂解途径与顺铂介导的五肽Ac-Gly-Met-Gly-His-Gly-OH中Ac-Gly键的上游裂解相互竞争。这导致因上游裂解形成H-Gly-Met-Gly-His-Gly-OH的κ³S,N(M),N(G1)络合物,以及因H-Gly-His-Gly-OH的初始下游损失,随后乙酸上游损失而形成H-Gly-Met-OH的类似三齿络合物。由于在类似条件下未观察到Ac-(Gly)₂-Met-(Gly)₂-OH的下游裂解,因此可以得出结论,与锚定蛋氨酸S原子处于反位的氨配体的快速组氨酸咪唑取代必定有助于Met-Gly酰胺键的水解裂解。