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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Role of extracellular charged amino acids in the yeast α-factor receptor
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Role of extracellular charged amino acids in the yeast α-factor receptor

机译:细胞外带电氨基酸在酵母α-因子受体中的作用

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摘要

The yeast pheromone receptor, Ste2p, is a G protein coupled receptor that initiates cellular responses to α-mating pheromone, a 13 residue peptide that carries a net positive charge at physiological pH. We have examined the role of extracellular charged groups on the receptor in response to the pheromone. Substitutions of Asn or Ala for one extracellular residue, Asp275, affected both pheromone binding and signaling, suggesting that this position interacts directly with ligand. The other seven extracellular acidic residues could be individually replaced by polar residues with no detectable effects on receptor function. However, substitution of Ala for each of these seven residues resulted in impairment of signaling without affecting pheromone binding, implying that the polar nature of these residues promotes receptor activation. In contrast, substitution of Ala for each of the six positively charged residues at the extracellular surface of Ste2p did not affect signaling.
机译:酵母信息素受体Ste2p是一种G蛋白偶联受体,可引发细胞对α-交配信息素的反应,该信息素是13个残基的肽,在生理pH值下带有净正电荷。我们已经检查了响应信息素的受体上的细胞外带电基团的作用。 Asn或Ala取代一个胞外残基Asp275会影响信息素的结合和信号传导,这表明该位置直接与配体相互作用。其他七个细胞外酸性残基可以分别被极性残基取代,而对受体功能没有可检测的影响。但是,用Ala替代这七个残基中的每一个都会导致信号传导受损,而不会影响信息素的结合,这意味着这些残基的极性性质会促进受体激活。相反,在Ste2p胞外表面上六个带正电荷的残基中的每个残基都被Ala取代并不影响信号传导。

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