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首页> 外文期刊>Biochemistry >Deuterium exchange mass spectrometry as a probe of protein kinase activation. Analysis of wild-type and constitutively active mutants of MAP kinase kinase-1
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Deuterium exchange mass spectrometry as a probe of protein kinase activation. Analysis of wild-type and constitutively active mutants of MAP kinase kinase-1

机译:氘交换质谱作为蛋白激酶激活的探针。 MAP激酶激酶1的野生型和组成型活性突变体的分析

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Wild-type and constitutively active mutants of human MAP kinase kinase-l (MKK1) were analyzed by deuterium exchange mass spectrometry using a protocol that minimized loss of deuterium during analysis due to back exchange. The observed peptides accounted for 335 out of 393 residues. Not counting overlap peptides, three peptides showed decreased exchange in constitutively active compared Backbone amides in which exchange rates decreased upon kinase activation were observed near the regulatory phosphorylation sites Ser218 and Ser222 and the adjacent beta 9 strand. These decreases are consistent with electrostriction or reduced solvent access due to domain closure or formation of new hydrogen or salt bonds around the catalytic cleft and within the activation lip. Increased exchange upon activation was observed within six peptides derived from helix C and the five-stranded beta sheet from the N-proximal lobe of the conserved kinase domain and in one peptide located at the interface between the N- and C-proximal lobes. Two amides that underwent increased exchange were specifically localized between residues 68 and 69 in beta 1 and 140 and 142 in beta 5. These residues probably form contacts with each other on opposite sites of the beta sheet as well as with helix C. These increases appeared to represent localized fluctuations, rather than rigid body rearrangements, suggesting that MKK1 activation requires enhanced flexibility within the N-proximal lobe, perhaps to accommodate ATP binding, phosphotransfer, or ADP release. [References: 34]
机译:通过氘交换质谱法使用最小化由于反向交换而使氘在分析过程中损失的方案,通过氘交换质谱法分析了人MAP激酶激酶-1(MKK1)的野生型和组成型活性突变体。观察到的肽占393个残基中的335个。不计算重叠的肽,与主链酰胺相比,三种肽显示出减少的组成活性交换,其中在调节性磷酸化位点Ser218和Ser222和相邻的β9链附近观察到激酶激活后交换速率降低。这些减少与电致伸缩或由于域封闭或在催化裂隙周围和活化唇内形成新的氢键或盐键而导致的溶剂进入减少有关。在源自螺旋C的六个肽和来自保守激酶结构域的N-近叶的五链β折叠中以及位于N-和C-近叶之间的界面的一个肽中,观察到活化后交换增加。发生交换增加的两种酰胺特异性地位于beta 1的残基68和69之间以及beta 5的140和142之间。这些残基可能在β折叠的相反位点以及与螺旋C形成相互接触。代表局部波动,而不是刚体重排,这表明MKK1激活需要增强N近端叶内的柔韧性,可能是为了适应ATP结合,磷酸转移或ADP释放。 [参考:34]

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