首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Substituted cysteine accessibility method (SCAM) analysis of the transport domain of human concentrative nucleoside transporter 3 (hCNT3) and other family members reveals features of structural and functional importance
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Substituted cysteine accessibility method (SCAM) analysis of the transport domain of human concentrative nucleoside transporter 3 (hCNT3) and other family members reveals features of structural and functional importance

机译:人类浓缩核苷转运蛋白3(hCNT3)和其他家庭成员的运输域的替代半胱氨酸可及性方法(SCAM)分析揭示了结构和功能重要性的特征

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摘要

The human SLC28 family of concentrative nucleoside transporter (CNT) proteins has three members: hCNT1, hCNT2, and hCNT3. Na+-coupled hCNT1 and hCNT2 transport pyrimidine and purine nucleosides, respectively, whereas hCNT3 transports both pyrimidine and purine nucleosides utilizing Na+ and/or H+ electrochemical gradients. Escherichia coli CNT family member NupC resembles hCNT1 in permeant selectivity but is H+-coupled. Using heterologous expression in Xenopus oocytes and the engineered cysteine-less hCNT3 protein hCNT3(C−), substituted cysteine accessibility method analysis with the membrane-impermeant thiol reactive reagent p-chloromercuribenzene sulfonate was performed on the transport domain (interfacial helix 2, hairpin 1, putative transmembrane domain (TM) 7, and TM8), as well as TM9 of the scaffold domain of the protein. This systematic scan of the entire C-terminal half of hCNT3(C−) together with parallel studies of the transport domain of wild-type hCNT1 and the corresponding TMs of cysteine-less NupC(C−) yielded results that validate the newly developed structural homology model of CNT membrane architecture for human CNTs, revealed extended conformationally mobile regions within transport-domain TMs, identified pore-lining residues of functional importance, and provided evidence of an emerging novel elevator-type mechanism of transporter function.
机译:人SLC28浓缩核苷转运蛋白(CNT)蛋白家族具有三个成员:hCNT1,hCNT2和hCNT3。 Na + 偶联的hCNT1和hCNT2分别转运嘧啶和嘌呤核苷,而hCNT3利用Na + 和/或H + 转运嘧啶和嘌呤核苷。 sup>电化学梯度。大肠杆菌CNT家族成员NupC在渗透选择性上类似于hCNT1,但是是H + 偶联的。利用非洲爪蟾卵母细胞和工程化的少半胱氨酸的hCNT3蛋白hCNT3(C-)中的异源表达,在转运域(界面螺旋2,发夹1)上进行了膜不渗透硫醇反应试剂对氯mercuribenzene磺酸盐替代半胱氨酸可及性分析方法,推定的跨膜结构域(TM)7和TM8)以及蛋白质支架结构域的TM9。对hCNT3(C-)整个C端一半的系统扫描,以及对野生型hCNT1转运域和无半胱氨酸的NupC(C-)对应TM的平行研究,产生了验证新开发的结构的结果人碳纳米管的碳纳米管膜结构的同源模型,揭示了转运域TM内扩展的构象可移动区域,鉴定了具有功能重要性的孔衬残基,并提供了新兴的转运蛋白功能的新型升降型机制的证据。

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