Characterization of mammalian Gs-alpha proteins expressed in yeast.

J M Stadel, D J Ecker, D A Powers, J Marsh, K Hoyle, M Gross, M D Minnich, T R Butt, S T Crooke
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引用次数: 2

Abstract

The guanine nucleotide regulatory protein, GS, mediates transmembrane signaling by coupling membrane receptors to the stimulation of adenylyl cyclase activity. The full length coding sequences for the M(r) = 42-45,000, short form (S), and M(r) = 46-52,000, long form (L), of the alpha-subunits of rat GS were placed in yeast expression vectors under the regulatory control of the copper-inducible CUP1 promoter and transformed into Saccharomyces cerevisiae. In the presence of 100 microM CuSO4, the transformed yeast expressed GS-alpha mRNAs and proteins. In reconstitution experiments, rat GS-alpha(S and L), solubilized from yeast membranes with 1% cholate, conferred NaF-, (-)isoproterenol-, and guanine nucleotide-dependent sensitivity to adenylyl cyclase catalytic units in S49 lymphoma cyc- cell membranes, which are devoid of endogenous GS-alpha. GS-alpha (S) demonstrated twice the activity of GS-alpha(L) in reconstitution assays of fluoride-stimulated adenylyl cyclase activity. Comparison of GS-alpha (S) expressed in yeast with GS purified from rabbit liver or human erythrocytes showed that the crude recombinant protein was fully competent in reconstituting NaF-stimulated adenylyl cyclase activity, but was only 2-5% as potent as purified GS. Addition of bovine brain beta gamma subunits during reconstitution enhanced all parameters of adenylyl cyclase activity for GS-alpha(S and L) obtained from yeast. In contrast, transducin beta gamma only enhanced agonist-stimulated adenylyl cyclase activity for GS-alpha (S and L) following reconstitution. These results demonstrate that the expression of functional mammalian GS-alpha subunits in yeast may be useful for their biochemical characterization.

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哺乳动物gs - α蛋白在酵母中的表达。
鸟嘌呤核苷酸调节蛋白GS通过偶联膜受体刺激腺苷酸环化酶活性介导跨膜信号传导。将大鼠GS α -亚基M(r) = 42 ~ 45000,短形式(S)和M(r) = 46 ~ 52000,长形式(L)的全长编码序列置于铜诱导CUP1启动子调控下的酵母表达载体中,转化为酿酒酵母。在100微米CuSO4存在下,转化酵母表达gs - α mrna和蛋白。在重组实验中,用1%的胆酸盐从酵母膜中溶解大鼠gs - α (S和L),使其对S49淋巴瘤周期细胞膜中缺乏内源性gs - α的腺苷酸环化酶催化单元具有NaF-、(-)异丙肾上腺素和鸟嘌呤核苷酸依赖的敏感性。在氟化物刺激的腺苷酸环化酶活性重建实验中,gs - α (S)的活性是gs - α (L)的两倍。酵母中表达的GS- α (S)与兔肝或人红细胞中纯化的GS的比较表明,粗重组蛋白完全能够重建naff刺激的腺苷酸环化酶活性,但其效力仅为纯化GS的2-5%。在重组过程中加入牛脑β - γ亚基提高了从酵母中获得的gs - α (S和L)腺苷酸环化酶活性的所有参数。相比之下,在重组后,转导蛋白β - γ仅增强激动剂刺激的gs - α (S和L)腺苷酸环化酶活性。这些结果表明,功能性哺乳动物gs - α亚基在酵母中的表达可能有助于其生化表征。
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Expression of alpha-bungarotoxin receptor subtypes in chick central nervous system during development. In situ characterization of renal insulin receptors in the rat. Characterization of mammalian Gs-alpha proteins expressed in yeast. Antibody binding to the juxtamembrane region of the insulin receptor alters receptor affinity. Isolation and characterization of neurokinin A receptor cDNAs from guinea-pig lung and rabbit pulmonary artery.
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