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首页> 外文期刊>The Plant Cell >The two AGPase subunits evolve at different rates in angiosperms, yet they are equally sensitive to activity-altering amino acid changes when expressed in bacteria
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The two AGPase subunits evolve at different rates in angiosperms, yet they are equally sensitive to activity-altering amino acid changes when expressed in bacteria

机译:这两个AGPase亚基在被子植物中以不同的速率进化,但是当它们在细菌中表达时,它们对改变活性的氨基酸变化同样敏感。

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摘要

The rate of protein evolution is generally thought to reflect, at least in part, the proportion of amino acids within the protein that are needed for proper function. In the case of ADP-glucose pyrophosphorylase (AGPase), this premise led to the hypothesis that, because the AGPase small subunit is more conserved compared with the large subunit, a higher proportion of the amino acids of the small subunit are required for enzyme activity compared with the large subunit. Evolutionary analysis indicates that the AGPase small subunit has been subject to more intense purifying selection than the large subunit in the angiosperms. However, random mutagenesis and expression of the maize (Zea mays) endosperm AGPase in bacteria show that the two AGPase subunits are equally predisposed to enzyme activity-altering amino acid changes when expressed in one environment with a single complementary subunit. As an alternative hypothesis, we suggest that the small subunit exhibits more evolutionary constraints in planta than does the large subunit because it is less tissue specific and thus must form functional enzyme complexes with different large subunits. Independent approaches provide data consistent with this alternative hypothesis.
机译:通常认为蛋白质进化的速率至少部分反映了蛋白质中适当功能所需氨基酸的比例。对于ADP-葡萄糖焦磷酸化酶(AGPase),该假设导致这样的假设:由于AGPase小亚基比大亚基更保守,因此小亚基的氨基酸比例需要更高的酶活性与大型亚单位相比。进化分析表明,与被子植物中的大亚基相比,AGPase小亚基的纯化选择更为严格。但是,玉米中的胚乳AGPase的随机诱变和表达表明,当在一个环境中用单个互补亚基表达时,两个AGPase亚基同样易使酶活性改变。作为另一种假设,我们建议小亚基在植物中比大亚基表现出更多的进化限制,因为它对组织的特异性较低,因此必须与不同的大亚基形成功能性酶复合物。独立的方法可提供与此替代假设一致的数据。

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