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Structure of the trypanosome haptoglobin-hemoglobin receptor and implications for nutrient uptake and innate immunity.

机译:锥虫触珠蛋白-血红蛋白受体的结构及其对养分吸收和先天免疫的影响。

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摘要

African trypanosomes are protected by a densely packed surface monolayer of variant surface glycoprotein (VSG). A haptoglobin-hemoglobin receptor (HpHbR) within this VSG coat mediates heme acquisition. HpHbR is also exploited by the human host to mediate endocytosis of trypanolytic factor (TLF)1 from serum, contributing to innate immunity. Here, the crystal structure of HpHbR from Trypanosoma congolense has been solved, revealing an elongated three α-helical bundle with a small membrane distal head. To understand the receptor in the context of the VSG layer, the dimensions of Trypanosoma brucei HpHbR and VSG have been determined by small-angle X-ray scattering, revealing the receptor to be more elongated than VSG. It is, therefore, likely that the receptor protrudes above the VSG layer and unlikely that the VSG coat can prevent immunoglobulin binding to the receptor. The HpHb-binding site has been mapped by single-residue mutagenesis and surface plasmon resonance. This site is located where it is readily accessible above the VSG layer. A single HbHpR polymorphism unique to human infective T. brucei gambiense has been shown to be sufficient to reduce binding of both HpHb and TLF1, modulating ligand affinity in a delicate balancing act that allows nutrient acquisition but avoids TLF1 uptake.
机译:非洲锥虫受到变异表面糖蛋白(VSG)的密集堆积的表面单层的保护。该VSG涂层中的触珠蛋白-血红蛋白受体(HpHbR)介导血红素的获取。人类宿主还利用HpHbR介导血清中锥虫溶解因子(TLF)1的内吞作用,从而促进先天免疫。在这里,解决了锥虫锥虫HpHbR的晶体结构,揭示了一个细长的三个α-螺旋束,带有一个小的膜远端头。为了了解VSG层中的受体,已经通过小角度X射线散射确定了布鲁氏锥虫HpHbR和VSG的尺寸,揭示了受体比VSG更长。因此,受体很可能突出到VSG层上方,而VSG涂层可能无法阻止免疫球蛋白与受体结合。 HpHb结合位点已通过单残基诱变和表面等离振子共振作图。该站点位于VSG层上方易于访问的位置。已经证明,人类感染性布鲁氏螺旋体特有的单个HbHpR多态性足以减少HpHb和TLF1的结合,以微妙的平衡作用调节配体亲和力,使营养素获得但避免TLF1吸收。

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