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一种类似物甲烷菌素肽的pH依赖性铜(II)和锌(II)结合行为

The pH dependent Cu(II) and Zn(II) binding behavior of an analog methanobactin peptide.

作者信息

Sesham Ramakrishna, Choi Dongwon, Balaji Anupama, Cheruku Sahithi, Ravichetti Chiranjeevi, Alsharani Aisha A, Nasani Mahesbabu, Angel Laurence A

机构信息

Department of Chemistry, Texas A&M University-Commerce, 2600 S Neal St, Commerce, Texas 75428, USA.

Department of Biology and Environmental Science, Texas A&M University-Commerce, 2600 S Neal St, Commerce, Texas 75428, USA.

出版信息

Eur J Mass Spectrom (Chichester). 2013;19(6):463-73. doi: 10.1255/ejms.1249.

Abstract

The pH dependent reactivity of an analog methanobactin peptide (amb) with the sequence acetyl-His1-Cys2-Gly3-Pro4-His5-Cys6 (Mw = 694.79 Da) was investigated for its binding ability for a series of biologically active metal ions using ion mobility-mass spectrometry. Cu(II), Zn(II) and, to a lesser extent, Ni(II) were observed to form complexes with amb from 1 : 1 molar equivalent amb:metal(II) solutions at pH > 6, indicating the deprotonation of the imidazole N of His (pKa = 6.0) must occur to allow the initial anchoring of the metal(II) ion. The amb-metal(II) complexes were observed as both positive and negative ions, although the Zn(II) complexes preferred forming an overall negative ion complex which is consistent with the two thiolate groups of Cys2 and Cys6 being involved in Zn(II) coordination. The Cu(II) addition, however, always resulted in a Cys-Cys disulfide bridge in both Cu-free amb and Cu-bound amb, which excluded thiolate coordination to Cu(II). Collision cross- section measurements showed the Zn(II) and Cu(II) negative ion complexes were smaller than the positive ion complexes, suggesting Zn(II) binds most compactly via the imidazole N of His and the thiolate groups of Cys, whereas Cu(II) binds most compactly via the imidazole N of His and two deprotonated N of two amide groups on the peptide backbone. The lowest energy structures from the B3LYP/LanL2DZ level of theory showed the functional groups of His5, Cys2 and Cys6 coordinated to Zn(II), whereas the His1 and the amide nitrogens of Cys2 and Gly3 coordinated to Cu(II), producing an overall negative charged complex. The positive ion complexes of Zn(II) and Cu(II) were both shown to coordinate via the two imidazole nitrogens of His1 and His5 and either the oxygen of the backbone carbonyl of Cys6 or the oxygen of the C-terminal, respectively.

摘要

利用离子淌度-质谱研究了序列为乙酰基-His1-Cys2-Gly3-Pro4-His5-Cys6(分子量 = 694.79道尔顿)的类似物甲烷菌素肽(amb)对一系列生物活性金属离子的结合能力与其pH依赖性反应活性。在pH > 6时,观察到Cu(II)、Zn(II)以及在较小程度上的Ni(II)与1 : 1摩尔当量的amb:金属(II)溶液中的amb形成络合物,这表明His的咪唑N(pKa = 6.0)必须发生去质子化才能使金属(II)离子进行初始锚定。尽管Zn(II)络合物更倾向于形成整体带负电的络合物,这与Cys2和Cys6的两个硫醇盐基团参与Zn(II)配位一致,但amb-金属(II)络合物以正离子和负离子形式都被观察到。然而,添加Cu(II)总是会在无Cu的amb和与Cu结合的amb中都导致形成Cys-Cys二硫键,这排除了硫醇盐与Cu(II)的配位。碰撞截面测量表明,Zn(II)和Cu(II)的负离子络合物比正离子络合物小,这表明Zn(II)通过His的咪唑N和Cys的硫醇盐基团最紧密地结合,而Cu(II)通过His的咪唑N和肽主链上两个酰胺基团的两个去质子化N最紧密地结合。理论水平为B3LYP/LanL2DZ的最低能量结构表明,His5、Cys2和Cys6的官能团与Zn(II)配位,而His1以及Cys2和Gly3的酰胺氮与Cu(II)配位,形成一个整体带负电的络合物。Zn(II)和Cu(II)的正离子络合物分别通过His1和His5的两个咪唑氮以及Cys6主链羰基的氧或C端的氧进行配位。

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