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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Toward an Antitumor Form of Bovine Pancreatic Ribonuclease: The Crystal Structure of Three Noncovalent Dimeric Mutants
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Toward an Antitumor Form of Bovine Pancreatic Ribonuclease: The Crystal Structure of Three Noncovalent Dimeric Mutants

机译:牛抗核糖核酸酶的抗肿瘤形式:三个非共价二聚体突变体的晶体结构。

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The cytotoxic action of bovine seminal ribonuclease (BS-RNase) depends on its noncovalent swapped dimeric form (NCD-BS), which presents a compact structure that allows the molecule to escape ribonuclease inhibitor (RI). A Key role in the acquisition of this structure has been attributed to the concomitant presense of a proline in position 19 and a leucine in position 28. This introduction of Leu28, Cys31, and Cys32 and, in addition, of Pro19 in the sequence of bovine pancreatic ribonuclease (RNase A) has produced two dimeric variants LCC and PLCC, which do exhibit a cytotoxic activity, though at a much lower level than BS-RNase. The crystal structure analysis of the noncovalent swapped form (NCD) of LCC and PLCG complexed with the substrate analogue 2'-deoxycytidylyl(3',5')-2'-deoxyguanosine, has revealed that, differently from NCD-BS, the dimers adopt an opened quaternary structure, with the two Leu residues fully exposed to the solvent, that does not hinder the binding of RI. similar results have been obtained for a third mutant of the pancreatic enzyme, engineered with the hinge peptide sequence of the seminal enzyme (residues 16-22) and the two cysteines in position 31 and 31, but lacking the hydrophobic Leu residue in position. 28. The comparison of these three structures with those previously reported for other ribonuclease swapped dimers strongly suggests that, in addition to Pro19 and Leu28, the presence of a glycine at the N-terminal end of the hinge peptide is also important to push the swapped form of RNase A dimer into the compact quaternary organization observed for NCD-BS.
机译:牛精原核糖核酸酶(BS-RNase)的细胞毒性作用取决于其非共价交换二聚体形式(NCD-BS),其呈现出致密的结构,可使分子逃脱核糖核酸酶抑制剂(RI)。在获得这种结构中的关键作用归因于在位置19上脯氨酸和在位置28上亮氨酸的同时存在。这种Leu28,Cys31和Cys32以及另外Pro19在牛序列中的引入胰腺核糖核酸酶(RNase A)已经产生了两个二聚体变体LCC和PLCC,尽管它们的水平远低于BS-RNase,但它们确实具有细胞毒活性。 LCC和PLCG与底物类似物2'-deoxycytidylyl(3',5')-2'-deoxyguanosine复合的非共价交换形式(NCD)的晶体结构分析显示,与NCD-BS不同,二聚体采用开放的四级结构,两个Leu残基完全暴露于溶剂中,这不会阻碍RI的结合。对于胰酶的第三突变体,获得了相似的结果,该突变体用精酶的铰链肽序列(残基16-22)和31和31位的两个半胱氨酸工程改造,但是在位置缺少疏水性Leu残基。 28.将这三个结构与先前报道的其他核糖核酸酶交换二聚体的结构进行比较,强烈表明,除了Pro19和Leu28之外,铰链肽N端还存在甘氨酸对于推动交换结构也很重要。 RNase A二聚体的形式进入NCD-BS观察到的紧密四级结构。

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