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Identification of the Human Rhinovirus Serotype 1A Binding Site on the Murine Low-Density Lipoprotein Receptor by Using Human-Mouse Receptor Chimeras

机译:通过使用人类-小鼠受体嵌合体在小鼠低密度脂蛋白受体上鉴定人类鼻病毒血清型1A结合位点。

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摘要

Human rhinovirus serotype 1A (HRV1A) binds more strongly to the mouse low-density lipoprotein receptor (LDLR) than to the human homologue (M. Reithmayer, A. Reischl, L. Snyers, and D. Blaas, J. Virol. 76:6957-6965, 2002). Here, we used this fact to determine the binding site of HRV1A by replacing selected ligand binding modules of the human receptor with the corresponding ligand binding modules of the mouse receptor. The chimeric proteins were expressed in mouse fibroblasts deficient in endogenous LDLR and LDLR-related protein, both used by minor group HRVs for cell entry. Binding was assessed by virus overlay blots, by immunofluorescence microscopy, and by measuring cell attachment of radiolabeled virus. Replacement of ligand binding repeat 5 of the human LDLR with the corresponding mouse sequence resulted in a substantial increase in HRV1A binding, whereas substitution of repeats 3 and 4 was without effect. Replacement of human receptor repeats 1 and 2 with the murine homologues also increased virus binding. Finally, murine receptor modules 1, 2, and 5 simultaneously introduced into the human receptor resulted in HRV1A binding indistinguishable from mouse wild-type receptor. Thus, repeats 1 and/or 2 and repeat 5 are involved in HRV1A attachment. Changing CDGGPD in the acidic cluster of module 5 in the human receptor to CDGEAD present in the mouse receptor led to substantially increased binding of HRV1A, indicating an important role of the glutamate residue in HRV1A recognition.
机译:人类鼻病毒血清型1A(HRV1A)与小鼠低密度脂蛋白受体(LDLR)的结合比与人类同源物的结合更牢固(M. Reithmayer,A.Reischl,L.Snyers,and D.Blaas,J.Virol.76: 6957-6965,2002)。在这里,我们利用这一事实通过将人类受体的选定配体结合模块替换为小鼠受体的相应配体结合模块,来确定HRV1A的结合位点。嵌合蛋白在缺乏内源性LDLR和LDLR相关蛋白的小鼠成纤维细胞中表达,两者均被次要HRV组用于细胞进入。通过病毒覆盖印迹,免疫荧光显微镜和测量放射性标记病毒的细胞附着来评估结合。用相应的小鼠序列取代人LDLR的配体结合重复序列5导致HRV1A结合显着增加,而重复序列3和4的取代则没有效果。用鼠类同系物替代人类受体重复序列1和2也增加了病毒结合。最后,同时引入人受体的鼠受体模块1、2和5导致HRV1A结合与小鼠野生型受体无法区分。因此,重复1和/或2和重复5参与HRV1A的附着。将人受体模块5的酸性簇中的CDGGPD更改为小鼠受体中存在的CDGEAD,会导致HRV1A的结合大大增加,这表明谷氨酸残基在HRV1A识别中具有重要作用。

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