首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Transmembrane Segment 6 of the Glut1 Glucose Transporter Is an Outer Helix and Contains Amino Acid Side Chains Essential for Transport Activity
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Transmembrane Segment 6 of the Glut1 Glucose Transporter Is an Outer Helix and Contains Amino Acid Side Chains Essential for Transport Activity

机译:Glut1葡萄糖转运蛋白的跨膜段6是外部。 螺旋线并含有运输必需的氨基酸侧链 活动

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摘要

Experimental data and homology modeling suggest a structure for the exofacial configuration of the Glut1 glucose transporter in which 8 transmembrane helices form an aqueous cavity in the bilayer that is stabilized by four outer helices. The role of transmembrane segment 6, predicted to be an outer helix in this model, was examined by cysteine-scanning mutagenesis and the substituted cysteine accessibility method using the membrane-impermeant, sulfhydryl-specific reagent, p-chloromercuribenzene-sulfonate (pCMBS). A fully functional Glut1 molecule lacking all 6 native cysteine residues was used as a template to produce a series of 21 Glut1 point mutants in which each residue along helix 6 was individually changed to cysteine. These mutants were expressed in Xenopus oocytes, and their expression levels, functional activities, and sensitivities to inhibition by pCMBS were determined. Cysteine substitutions at Leu204 and Pro205 abolished transport activity, whereas substitutions at Ile192, Pro196, Gln200, and Gly201 resulted in inhibition of activity that ranged from ∼35 to ∼80%. Cysteine substitutions at Leu188, Ser191, and Leu199 moderately augmented specific transport activity relative to the control. These results were dramatically different from those previously reported for helix 12, the structural cognate of helix 6 in the pseudo-symmetrical structural model, for which none of the 21 single-cysteine mutants exhibited reduced activity. Only the substitution at Leu188 conferred inhibition by pCMBS, suggesting that most of helix 6 is not exposed to the external solvent, consistent with its proposed role as an outer helix. These data suggest that helix 6 contains amino acid side chains that are critical for transport activity and that structurally analogous outer helices may play distinct roles in the function of membrane transporters.
机译:实验数据和同源性建模表明,Glut1葡萄糖转运蛋白的岩面构造结构,其中8个跨膜螺旋在双层中形成由四个外部螺旋稳定的双层水腔。通过半胱氨酸扫描诱变和取代的半胱氨酸可及性方法,使用不渗透膜的巯基特异性试剂对氯mercuribenzene-磺酸盐(pCMBS),检查了跨膜区段6(在该模型中是外部螺旋)的作用。使用缺少所有6个天然半胱氨酸残基的功能齐全的Glut1分子作为模板,以产生一系列21个Glut1点突变体,其中沿螺旋6的每个残基都单独变为半胱氨酸。这些突变体在非洲爪蟾卵母细胞中表达,并确定了它们的表达水平,功能活性和对pCMBS抑制的敏感性。 Leu 204 和Pro 205 的半胱氨酸取代消除了转运活性,而Ile 192 ,Pro 196 ,Gln的取代 200 和Gly 201 对活性的抑制作用范围从〜35%到〜80%。 Leu 188 ,Ser 191 和Leu 199 的半胱氨酸取代 相对于对照,适度增加了比运输活动。 这些结果与先前报道的 螺旋12,在假对称结构中螺旋6的结构同源 结构模型,其中21个半胱氨酸突变体均未显示 活动减少。只有在Leu 188 处的替换才被授予 pCMBS的抑制作用,表明大多数螺旋6并未暴露于 外部溶剂,与其作为外部螺旋的拟议作用一致。这些 数据表明,螺旋6包含至关重要的氨基酸侧链 进行运输活动,并且可能在结构上类似外部螺旋 在膜转运蛋白功能中的独特作用。

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