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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Selective peptide bond hydrolysis of cysteine peptides in the presence of Ni(II) ions
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Selective peptide bond hydrolysis of cysteine peptides in the presence of Ni(II) ions

机译:Ni(II)离子存在下半胱氨酸肽的选择性肽键水解

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摘要

Recently, we described a sequence-specific R1-(Ser/Thr) peptide bond hydrolysis reaction in peptides of a general sequence R1-(Ser/Thr)-Xaa-His-Zaa- R, which occurs in the presence of Ni(II) ions [A. Kr??el, E. Kopera, A. M. Protas, A. Wys?ouch-Cieszyńska, J. Poznański, W. Bal, J. Am. Chem. Soc. 132 (2010) 3355-3366]. In this study we explored the possibility of substituting the Ser/Thr and the His residues, necessary for the reaction to occur according to the Ni(II)-assisted acyl shift reaction mechanism, with Cys residues. We tested this concept by synthesizing three homologous peptides: R1-Ser-Arg-Cys-Trp-R2, R1-Cys-Arg-His-Trp-R2, and R1-Cys-Arg-Cys-Trp-R2, and the R1-Ser-Arg-His-Trp-R2 peptide as comparator (R1 and R2 were CH3CO-Gly-Ala and Lys-Phe-Leu-NH2, respectively). We studied their hydrolysis in the presence of Ni(II) ions, under anaerobic conditions and in the presence of TCEP as a thiol group antioxidant. We measured hydrolysis rates using HPLC and identified products of reaction using electrospray mass spectrometry. Potentiometry and UV-vis spectroscopy were used to assess Ni(II) complexation. We demonstrated that Ni(II) is not compatible with the Cys substitution of the Ser/Thr acyl acceptor residue, but the substitution of the Ni(II) binding His residue with a Cys yields a peptide susceptible to Ni(II)-related hydrolysis. The relatively high activity of the R1-Ser-Arg-Cys-Trp-R2 peptide at pH 7.0 suggests that this peptide and its Cys-containing analogs might be useful in practical applications of Ni(II)-dependent peptide bond hydrolysis.
机译:最近,我们描述了一般序列R1-(Ser / Thr)-Xaa-His-Zaa-R的肽中的序列特异性R1-(Ser / Thr)肽键水解反应,该反应在Ni(II)存在下发生)离子[A. Kr ?? el,E。Kopera,A。M. Protas,A。Wys?ouch-Cieszyńska,J。Poznański,W。Bal,J。Am。化学Soc。 132(2010)3355-3366]。在这项研究中,我们探索了根据Ni(II)辅助的酰基转移反应机理用Cys残基取代Ser / Thr和His残基的可能性,该残基是反应发生所必需的。我们通过合成三个同源肽(R1-Ser-Arg-Cys-Trp-R2,R1-Cys-Arg-His-Trp-R2和R1-Cys-Arg-Cys-Trp-R2和R1)测试了这一概念-Ser-Arg-His-Trp-R2肽作为比较物(R1和R2分别为CH3CO-Gly-Ala和Lys-Phe-Leu-NH2)。我们研究了它们在Ni(II)离子的存在下,在厌氧条件下以及在TCEP作为硫醇基抗氧化剂的条件下的水解。我们使用HPLC测量了水解速率,并使用电喷雾质谱法确定了反应产物。电位计和紫外可见光谱法用于评估Ni(II)络合。我们证明了Ni(II)与Ser / Thr酰基受体残基的Cys取代不兼容,但结合His(Cys)残基的Ni(II)的取代产生了易受Ni(II)相关水解作用的肽。 R1-Ser-Arg-Cys-Trp-R2肽在pH 7.0时具有较高的活性,表明该肽及其含Cys的类似物可能在Ni(II)依赖性肽键水解的实际应用中有用。

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