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首页> 外文期刊>The Journal of biological chemistry >Structure-Function Studies of the SLC17 Transporter Sialin Identify Crucial Residues and Substrate-induced Conformational Changes
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Structure-Function Studies of the SLC17 Transporter Sialin Identify Crucial Residues and Substrate-induced Conformational Changes

机译:SLC17转运蛋白的结构函数研究鉴定关键残留物和基材诱导的构象变化

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摘要

Salla disease and infantile sialic acid storage disorder are human diseases caused by loss of function of sialin, a lysosomal transporter that mediates H+-coupled symport of acidic sugars N-acetylneuraminic acid and glucuronic acid out of lysosomes. Along with the closely related vesicular glutamate transporters, sialin belongs to the SLC17 transporter family. Despite their critical role in health and disease, these proteins remain poorly understood both structurally and mechanistically. Here, we use substituted cysteine accessibility screening and radiotracer flux assays to evaluate experimentally a computationally generated three-dimensional structure model of sialin. According to this model, sialin consists of 12 transmembrane helices (TMs) with an overall architecture similar to that of the distantly related glycerol 3-phosphate transporter GlpT. We show that TM4 in sialin lines a large aqueous cavity that forms a part of the substrate permeation pathway and demonstrate substrate-induced alterations in accessibility of substituted cysteine residues in TM4. In addition, we demonstrate that one mutant, F179C, has a dramatically different effect on the apparent affinity and transport rate for N-acetylneuraminic acid and glucuronic acid, suggesting that it may be directly involved in substrate recognition and/or translocation. These findings offer a basis for further defining the transport mechanism of sialin and other SLC17 family members.
机译:Salla疾病和婴儿唾液酸储存障碍是由唾液蛋白的功能丧失引起的人类疾病,该溶酶体转运蛋白介导酸性糖N-乙酰甘氨酸和葡糖醛酸的溶酶体中的H + -coupled Symport。除了与紧密相关的凹凸谷氨酸转运蛋白转运蛋白外,Sialin属于SLC17运输家族。尽管在健康和疾病中作用关键作用,但这些蛋白质仍然在结构上和机械上仍然清晰地理解。在此,我们使用取代的半胱氨酸可访问性筛选和放射性物流助焊剂测定来评估唾液所的计算产生的三维结构模型。根据该模型,Sialin由12个跨膜螺旋(TMS)组成,整体架构类似于远方相关的甘油3-磷酸转运蛋白GLPT。我们展示了Sialin线中的TM4在一个大的水腔中,形成底物渗透途径的一部分,并证明在TM4中取代的半胱氨酸残基的可接近性的底物诱导的改变。此外,我们证明了一种突变体F179C对N-乙酰氨酸和葡糖醛酸的表观亲和力和运输速率有显着不同,这表明它可以直接参与底物识别和/或易位。这些调查结果为进一步定义了Sialin和其他SLC17家族成员的运输机制提供了基础。

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