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在大肠杆菌中表达的水稻(Oryza sativa L., IR36)G蛋白α亚基的生化特性。

Biochemical characteristics of a rice (Oryza sativa L., IR36) G-protein alpha-subunit expressed in Escherichia coli.

作者信息

Seo H S, Choi C H, Lee S Y, Cho M J, Bahk J D

机构信息

Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Chinju 660-701, Korea.

出版信息

Biochem J. 1997 May 15;324 ( Pt 1)(Pt 1):273-81. doi: 10.1042/bj3240273.

Abstract

A cDNA encoding the alpha-subunit of the heterotrimeric G-protein in rice (RGA1) was overexpressed in Escherichia coli and then isolated by Ni2+-nitrilotriacetic acid affinity chromatography. The molecular mass of RGA1 bearing a His tag was approx. 49 kDa. Immunoblot analysis using anti-RGA1 revealed that the RGA1 protein is most abundant in seedling leaves and least abundant in mature roots. It exists at particularly high levels in the immature embryo after pellicle extrusion. In addition, the RGA1 antiserum exhibited a difference in binding affinity for Galpha proteins from monocots (maize and rice) and dicots (Arabidopsis, pea, soya bean and tomato); whereas it cross-reacted with Galpha proteins of monocots, it did not with those of dicot plants. When bound to guanosine 5'-(gamma-thio)triphosphate (GTP[S]), the RGA1 protein was partially protected from tryptic proteolysis. In the presence of GTP[S], trypsin cleaved the RGA1 protein into four fragments 24, 14, 11 and 5 kDa in size. When RGA1 was bound to GDP, only the 5 kDa polypeptide was seen on SDS/PAGE after trypsin digestion. Photoaffinity labelling with [alpha-32P]GTP and a GTP[S]-binding assay revealed that RGA1 incorporated 32P and showed specific binding to a guanine nucleotide. Guanidine binding of RGA1 was affected by the concentration of MgCl2 (maximum at 2 mM). The rate of guanine nucleotide binding of RGA1 (kon,GTP[S]=0.0141+/-0.0014 min-1) and, at steady state, the kcat value for GTP hydrolysis (0.0075+/-0.0001 min-1) were very low even at 2 mM MgCl2. The binding affinity for the nucleotides examined was in the order GTP-S- >/= GTP > GDP > CTP > ATP >/= dTTP.

摘要

编码水稻异三聚体G蛋白α亚基(RGA1)的cDNA在大肠杆菌中过表达,然后通过Ni2 + -次氮基三乙酸亲和层析进行分离。带有His标签的RGA1的分子量约为49 kDa。使用抗RGA1进行免疫印迹分析表明,RGA1蛋白在幼苗叶片中含量最高,在成熟根中含量最低。在种皮挤出后的未成熟胚中,它的含量特别高。此外,RGA1抗血清对单子叶植物(玉米和水稻)和双子叶植物(拟南芥、豌豆、大豆和番茄)的Gα蛋白的结合亲和力存在差异;它与单子叶植物的Gα蛋白发生交叉反应,但与双子叶植物的Gα蛋白不发生交叉反应。当与鸟苷5'-(γ-硫代)三磷酸(GTP[S])结合时,RGA1蛋白受到部分胰蛋白酶解保护。在GTP[S]存在下,胰蛋白酶将RGA1蛋白切割成大小分别为24、14、11和5 kDa的四个片段。当RGA1与GDP结合时,胰蛋白酶消化后在SDS/PAGE上仅可见5 kDa的多肽。用[α-32P]GTP进行光亲和标记和GTP[S]结合试验表明,RGA1掺入了32P并显示出与鸟嘌呤核苷酸的特异性结合。RGA1的鸟嘌呤结合受MgCl2浓度影响(在2 mM时最大)。即使在2 mM MgCl2下,RGA1的鸟嘌呤核苷酸结合速率(kon,GTP[S]=0.0141±0.0014 min-1)以及稳态下GTP水解的kcat值(0.0075±0.0001 min-1)也非常低。对所检测核苷酸的结合亲和力顺序为GTP-S-≥GTP>GDP>CTP>ATP≥dTTP。

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