首页> 外文期刊>Protein engineering design & selection: PEDS >Dissimilarity in the oxidative folding of onconase and ribonuclease A, two structural homologues.
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Dissimilarity in the oxidative folding of onconase and ribonuclease A, two structural homologues.

机译:onconase和核糖核酸酶A(两个结构同系物)的氧化折叠不同。

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The oxidative folding of frog onconase (ONC), a member of the ribonuclease A family, was examined and shows markedly different behavior compared to its structural homologue bovine pancreatic ribonuclease A (RNase A) under similar conditions. Application of a reduction pulse (using a small amount of reduced dithiothreitol) during the oxidative regeneration of ONC indicated the survival of the native protein along with three other (structured) species, I(1), I(2) and I(3), with the rest of the unstructured species being converted to fully reduced protein. Mass spectrometry indicates that I(1) has two disulfide bonds, whereas I(2) and I(3) have three disulfide bonds each. A disulfide mapping method, based on cyanylation, was used to identify I(2) and I(3) as des-[30-75] and des-[19-68], respectively. On enzymatic digestion using trypsin, I(1) was identified as des-[19-68, 30-75]. Differences in the intermediates that are generated during the oxidative folding of the two structural homologues, RNase A and ONC, demonstrate that regenerative pathways are not necessarily influenced by tertiary structure. This indicates that the lack of a disulfide bond in ONC, analogous to the (65-72) disulfide bond in RNase A which plays an important role in its oxidative regeneration, does not adversely affect the oxidative folding of ONC.
机译:蛙核糖核酸酶A家族的一个成员青蛙癌酶(ONC)的氧化折叠进行了检查,与类似结构的牛胰核糖核酸酶A(RNase A)在相似条件下相比,表现出明显不同的行为。在ONC的氧化再生过程中施加还原脉冲(使用少量还原的二硫苏糖醇)可表明天然蛋白以及其他三个(结构化)物种I(1),I(2)和I(3)的存活,其余的非结构化物种则转化为完全还原的蛋白质。质谱表明I(1)具有两个二硫键,而I(2)和I(3)各自具有三个二硫键。使用基于氰基化的二硫键作图方法将I(2)和I(3)分别标识为des- [30-75]和des- [19-68]。使用胰蛋白酶进行酶消化时,I(1)被鉴定为des- [19-68,30-75]。 RNase A和ONC这两个结构同源物的氧化折叠过程中产生的中间体之间的差异表明,再生途径不一定受三级结构的影响。这表明,类似于RNase A中的(65-72)二硫键(在其氧化再生中起重要作用),ONC中缺少二硫键不会对ONC的氧化折叠产生不利影响。

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