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首页> 外文期刊>Plant Physiology >Related Arabidopsis Serine Carboxypeptidase-Like Sinapoylglucose Acyltransferases Display Distinct But Overlapping Substrate Specificities1,[OA]
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Related Arabidopsis Serine Carboxypeptidase-Like Sinapoylglucose Acyltransferases Display Distinct But Overlapping Substrate Specificities1,[OA]

机译:相关拟南芥丝氨酸羧肽酶类似的Sinapylglucose葡萄糖酰基转移酶显示不同但重叠的底物特异性,[OA]

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摘要

The Arabidopsis (Arabidopsis thaliana) genome encodes 51 proteins annotated as serine carboxypeptidase-like (SCPL) enzymes. Nineteen of these SCPL proteins are highly similar to one another, and represent a clade that appears to be unique to plants. Two of the most divergent proteins within this group have been characterized to date, sinapoyl-glucose (Glc):malate sinapoyltransferase and sinapoyl-Glc:choline sinapoyltransferase. The fact that two of the least related proteins within this clade are acyltransferases rather than true serine carboxypeptidases suggests that some or all of the remaining members of this group may have similar activities. The gene that encodes sinapoyl-Glc:malate sinapoyltransferase (sinapoyl-Glc accumulator1 [SNG1]: At2g22990) is one of five SCPL genes arranged in a cluster on chromosome 2. In this study, an analysis of deletion mutant lines lacking one or more genes in this SCPL gene cluster reveals that three of these genes also encode sinapoyl-Glc-dependent acyltransferases. At2g23000 encodes sinapoyl-Glc:anthocyanin acyltransferase, an enzyme that is required for the synthesis of the sinapoylated anthocyanins in Arabidopsis. At2g23010 encodes an enzyme capable of synthesizing 1,2-disinapoyl-Glc from two molecules of sinapoyl-Glc, an activity shared by SNG1 and At2g22980. Sequence analysis of these SCPL proteins reveals pairwise percent identities that range from 71% to 78%, suggesting that their differing specificities for acyl acceptor substrates are due to changes in a relatively small subset of amino acids. The study of these SCPL proteins provides an opportunity to examine enzyme structure-function relationships and may shed light on the role of evolution of hydroxycinnamate ester metabolism and the SCPL gene family in Arabidopsis and other flowering plants.
机译:拟南芥(Arabidopsis thaliana)基因组编码51种蛋白,其标注为丝氨酸羧肽酶样(SCPL)酶。这些SCPL蛋白中有19种彼此高度相似,并且代表一种似乎是植物特有的进化枝。迄今为止,该组中两个最不同的蛋白质已被表征,即芥子酰基-葡萄糖(Glc):苹果酸芥子酰基转移酶和芥子酰基-Glc:胆碱芥子酰基转移酶。该进化枝中两个最不相关的蛋白质是酰基转移酶,而不是真正的丝氨酸羧肽酶,这一事实表明,该组中的某些或所有其余成员可能具有相似的活性。编码sinapoyl-Glc:苹果酸sinapoyltransferase(sinapoyl-Glc accumulator1 [SNG1]:At2g22990)的基因是排列在2号染色体上的五个SCPL基因之一。在这项研究中,分析了缺失一个或多个基因的缺失突变系该SCPL基因簇中的序列揭示了其中三个基因还编码了新芥基-Glc依赖性酰基转移酶。 At2g23000编码sinapoyl-Glc:花色素苷酰基转移酶,这是拟南芥中合成芥子化花色苷所需的酶。 At2g23010编码一种酶,该酶能够从两个分子的Sinapoyl-Glc合成1,2-二硒基-Glc,SNG1和At2g22980共有这种活性。这些SCPL蛋白的序列分析显示成对的同一性百分比范围为71%至78%,表明它们对酰基受体底物的不同特异性是由于相对较小的氨基酸子集的变化所致。对这些SCPL蛋白的研究提供了一个检查酶结构与功能关系的机会,并可能阐明羟基肉桂酸酯代谢和拟南芥和其他开花植物中SCPL基因家族的作用。

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