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Alternative conformations of the x region of human protein disulphide-isomerase modulate exposure of the substrate binding b’ domain

机译:人类蛋白质二硫键异构酶x区域的其他构象可调节底物结合b'结构域的暴露

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摘要

Protein disulphide isomerase (PDI) is a key multi-domain protein folding catalyst in the endoplasmic reticulum. The b’ domain of PDI is essential for the non-covalent binding of incompletely folded protein substrates. Earlier, we defined the substrate binding site in the b’ domain of human PDI by modelling and mutagenesis studies. Here, we show by fluorescence and NMR that recombinant human PDI b’x (comprising the b’ domain and the subsequent x linker region) can assume at least two different conformations in solution. We have screened mutants in the b’x region to identify mutations that favour one of these conformers in recombinant b'x, and isolated and characterised examples of both types. We have crystallised one mutant of b’x (I272A mutation) in which one conformer is stabilized, and determined its crystal structure to a resolution of 2.2 Å. This structure shows that the b’ domain has the typical thioredoxin fold and that the x region can interact with the b’ domain by ”capping” a hydrophobic site on the b’ domain. This site is most likely the substrate binding site and hence such capping will inhibit substrate binding. All of the mutations we previously reported to inhibit substrate binding shift the equilibrium towards the capped conformer. Hence, these mutations act by altering the natural equilibrium and decreasing the accessibility of the substrate binding site. Furthermore, we have confirmed that the corresponding structural transition occurs in the wild type full-length PDI. A cross-comparison of our data with that for other PDI-family members, Pdi1p and ERp44, suggests that the x region of PDI can adopt alternative conformations during the functional cycle of PDI action and that these are linked to the ability of PDI to interact with folding substrates.\ud\ud
机译:蛋白质二硫键异构酶(PDI)是内质网中关键的多域蛋白质折叠催化剂。 PDI的b'域对于未完全折叠的蛋白质底物的非共价结合至关重要。之前,我们通过建模和诱变研究在人类PDI b'域中定义了底物结合位点。在这里,我们通过荧光和NMR表明重组人PDI b'x(包含b'结构域和随后的x接头区域)在溶液中可以假定至少两个不同的构象。我们已经筛选了b'x区域的突变体,以鉴定出有利于重组b'x中这些构象异构体之一的突变,并分离并表征了这两种类型的实例。我们已经结晶了一个b’x突变体(I272A突变),其中一个构象体已稳定下来,并确定其晶体结构的分辨率为2.2。这种结构表明,b'结构域具有典型的硫氧还蛋白折叠,并且x区域可以通过“封闭” b'结构域上的疏水位点而与b'结构域相互作用。该位点很可能是底物结合位点,因此这种加帽将抑制底物结合。我们先前报道的所有抑制底物结合的突变都使平衡向带帽构象异构体移动。因此,这些突变通过改变天然平衡并降低底物结合位点的可及性起作用。此外,我们已经确认相应的结构转变发生在野生型全长PDI中。我们的数据与其他PDI家族成员Pdi1p和ERp44的交叉比较表明,PDI的x区域在PDI作用的功能周期内可以采用其他构象,并且这些与PDI相互作用的能力有关。带有可折叠的基材。\ ud \ ud

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