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The molecular origin and consequences of escape from miRNA regulation by HLA-C alleles.

机译:HLA-C等位基因调控miRNA逃逸的分子起源和后果。

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Differential expression of human leukocyte antigen C (HLA-C) allotypes is mediated by the binding of a microRNA, miR-148a, to the 3' untranslated region of some, but not all, HLA-C alleles. The binding results in lower levels of HLA-C expression, which is associated with higher levels of HIV-1 viral load among infected individuals. The alternative set of HLA-C alleles has several substitutions in the miR-148a binding site that prevent binding and HLA-C downregulation; these high-expression alleles associate with control of HIV-1 viral load. We show that the common ancestor of all extant HLA-C alleles was suppressed by miR-148a. Substitutions that prevent miR-148a binding arose by a sequence exchange event between an HLA-C allele and an HLA-B (MIM 142830) allele of a B( *)07-like lineage. The event occurred 3-5 million years ago, resulting in an HLA-C variant that escape from miR-148a downregulation. We present evidence suggesting that selection played a role in the successful spread of the HLA-C escape alleles, giving rise to 7 of the 14 extant HLA-C lineages. Notably, critical peptide and KIR binding residues of the escape variants have selectively converged to resemble the sequence of their inhibited counterparts, such that the inhibited and escape groupings differ primarily by their levels of expression.
机译:人类白细胞抗原C(HLA-C)同种异型的差异表达是通过microRNA miR-148a与某些但不是全部HLA-C等位基因的3'非翻译区结合而介导的。该结合导致较低水平的HLA-C表达,这与感染个体之间较高水平的HIV-1病毒载量有关。 HLA-C等位基因的替代集在miR-148a结合位点具有多个取代基,可防止结合和HLA-C下调;这些高表达等位基因与HIV-1病毒载量的控制有关。我们显示,miR-148a抑制了所有现存的HLA-C等位基因的共同祖先。通过在B(*)07样谱系的HLA-C等位基因与HLA-B(MIM 142830)等位基因之间发生序列交换事件,可以防止miR-148a结合的取代基出现。该事件发生在3-5百万年前,导致HLA-C变体摆脱了miR-148a下调。我们目前的证据表明,选择在HLA-C逃脱等位基因的成功传播中起作用,在14种现存的HLA-C谱系中产生了7个。值得注意的是,逃避变体的关键肽和KIR结合残基已经选择性地收敛以类似于其抑制的对应物的序列,从而使受抑制的和逃避的组的主要区别在于它们的表达水平。

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