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β-Ketoacyl-acyl carrier protein synthase III from pea (Pisum sativum L.): properties, inhibition by a novel thiolactomycin analogue and isolation of a cDNA clone encoding the enzyme

机译:豌豆(Pisum sativum L.)的β-酮酰基-酰基载体蛋白合成酶III:性质,新型硫代催乳素类似物的抑制作用以及编码该酶的cDNA克隆的分离

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摘要

A β-ketoacyl-acyl carrier protein (ACP) synthase III (KAS III; short-chain condensing enzyme) has been partly purified from pea leaves. The enzyme, which had acetyl-CoA:ACP acyltransferase (ACAT) activity, was resolved from a second, specific, ACAT protein. The KAS III enzyme had a derived molecular mass of 42 kDa (from its cDNA sequence) and operated as a dimer. Its enzymological characteristics were similar to those of two other plant KAS III enzymes except for its inhibition by thiolactomycin. A derivative of thiolactomycin containing a longer (C8 saturated) hydrophobic side-chain (compound 332) was a more effective inhibitor of pea KAS III and showed competitive inhibition towards malonyl-ACP whereas thiolactomycin showed uncompetitive characteristics at high concentrations. This difference may be due to the better fit of compound 332 into a hydrophobic pocket at the active site. A full-length cDNA for the pea KAS III was isolated. This was expressed in Escherichia coli as a fusion protein with glutathione S-transferase in order to facilitate subsequent purification. Demonstrated activity in preparations from E. coli confirmed that the cDNA encoded a KAS III enzyme. Furthermore, the expressed KAS III had ACAT activity, showing that the latter was inherent. The derived amino acid sequence of the pea cDNA showed 81–87% similarity to that for other plant dicotyledon KAS IIIs, somewhat less for Allium porrum (leek, 71%) and for Porphyra spp. (62%), Synechocystis spp. (65%) and various bacteria (42–65%). The pea KAS III exhibited four areas of homology, three of which were around the active-site Cys123, His323 and Asn353. In addition, a stretch of 23 amino acids (residues 207–229 in the pea KAS III) was almost completely conserved in the plant KAS IIIs. Modelling this stretch showed they belonged to a peptide fragment that fitted over the active site and contained segments suggested to be involved in substrate binding and in conformational changes during catalysis, as well as an arginine suggested to participate in the acid–base catalytic mechanism.
机译:β-酮酰基-酰基载体蛋白(ACP)合酶III(KAS III;短链缩合酶)已从豌豆叶中部分纯化。该酶具有乙酰辅酶A:ACP酰基转移酶(ACAT)活性,是从第二种特定的ACAT蛋白中分离出来的。 KAS III酶的衍生分子量为42 kDa(来自其cDNA序列),可作为二聚体运行。它的酶学特征与其他两种植物KAS III酶类似,除了它能被硫菌霉素抑制。含有更长(C8饱和)疏水性侧链的硫柳霉素衍生物(化合物332)是豌豆KAS III的更有效抑制剂,对丙二酰-ACP表现出竞争性抑制作用,而硫柳霉素在高浓度下则显示出非竞争性特征。这种差异可能是由于化合物332更好地适合了活性部位的疏水袋。分离出豌豆KAS III的全长cDNA。为了促进后续纯化,在大肠杆菌中将其表达为与谷胱甘肽S-转移酶的融合蛋白。在大肠杆菌中证实的活性证实了该cDNA编码了KAS III酶。此外,表达的KAS III具有ACAT活性,表明后者是固有的。豌豆cDNA的衍生氨基酸序列与其他植物双子叶植物KAS IIIs的相似性为81-87%,而葱属(韭菜为71%)和紫菜属的相似性略低。 (62%),集胞藻。 (65%)和各种细菌(42–65%)。豌豆KAS III具有四个同源性区域,其中三个在活性位点Cys123 ,His323 和Asn353 周围。另外,在植物KAS IIIs中,大约23个氨基酸的片段(豌豆KAS III中的207-229位残基)几乎完全保守。对这种拉伸进行建模显示,它们属于适合于活性位点的肽片段,并包含暗示参与底物结合和催化过程中构象变化的片段,以及建议精氨酸参与酸碱催化机制的片段。

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