首页> 美国卫生研究院文献>Biochemical Journal >Structural requirements of human DNase II alpha for formation of the active enzyme: the role of the signal peptide N-glycosylation and disulphide bridging.
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Structural requirements of human DNase II alpha for formation of the active enzyme: the role of the signal peptide N-glycosylation and disulphide bridging.

机译:人DNase IIα形成活性酶的结构要求:信号肽N-糖基化和二硫键桥接的作用。

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摘要

DNase II alpha (EC 3.1.22.1) is an endonuclease, which is active at low pH, that cleaves double-stranded DNA to short 3'-phosphoryl oligonucleotides. Although its biochemistry is well understood, its structure-activity relationship has been largely unexamined. Recently, we demonstrated that active DNase II alpha consists of one contiguous polypeptide, heavily glycosylated, and containing at least one intrachain disulphide linkage [MacLea, Krieser and Eastman (2002) Biochem. Biophys. Res. Commun. 292, 415-421]. The present paper describes further work to examine the elements of DNase II alpha protein required for activity. Truncated forms and site-specific mutants were expressed in DNase II alpha-null mouse cells. Results indicate that the signal-peptide leader sequence is required for correct glycosylation and that N-glycosylation is important for formation of the active enzyme. Despite this, enzymic deglycosylation of wild-type protein with peptide N-glycosidase F reveals that glycosylation is not intrinsically required for DNase activity. DNase II alpha contains six evolutionarily conserved cysteine residues, and mutations in any one of these cysteines completely ablated enzymic activity, consistent with the importance of disulphide bridging in maintaining correct protein structure. We also demonstrate that a mutant form of DNase II alpha that lacks the purported active-site His(295) can still bind DNA, indicating that this histidine residue is not simply involved in DNA binding, but may have a direct role in catalysis. These results provide a more complete model of the DNase II alpha protein structure, which is important for three-dimensional structural analysis and for production of DNase II alpha as a potential protein therapeutic for cystic fibrosis or other disorders.
机译:DNase II alpha(EC 3.1.22.1)是一种核酸内切酶,在低pH下具有活性,可将双链DNA切割成短的3'-磷酸基寡核苷酸。尽管其生物化学已广为人知,但其结构活性关系在很大程度上尚未得到检验。最近,我们证明了活性DNase IIα由一种连续的多肽组成,该多肽被高度糖基化,并包含至少一个链内二硫键[MacLea,Krieser和Eastman(2002)Biochem。生物物理学。 Res。公社292,415-421]。本文介绍了进一步的工作,以检查活动所需的DNase IIα蛋白的元素。截短的形式和位点特异性突变体在DNase II alpha-null小鼠细胞中表达。结果表明,信号肽前导序列是正确糖基化所必需的,而N-糖基化对于活性酶的形成很重要。尽管如此,用肽N-糖苷酶F对野生型蛋白进行的酶解糖基化表明,DNase活性并不需要糖基化。 DNase II alpha包含六个进化上保守的半胱氨酸残基,这些半胱氨酸中任何一个的突变都完全消除了酶的活性,这与二硫键桥接在维持正确蛋白质结构中的重要性相一致。我们还证明,缺乏声称的活性位点His(295)的DNase IIα突变形式仍然可以结合DNA,表明该组氨酸残基不仅仅参与DNA结合,而且可能在催化中具有直接作用。这些结果提供了DNase IIα蛋白质结构的更完整模型,这对于三维结构分析和DNase IIα的生产作为囊性纤维化或其他疾病的潜在蛋白质治疗剂而言都很重要。

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