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4-香豆酸:辅酶A连接酶为丁香酚生物合成分配代谢物。

4-coumarate: CoA ligase partitions metabolites for eugenol biosynthesis.

作者信息

Rastogi Shubhra, Kumar Ritesh, Chanotiya Chandan S, Shanker Karuna, Gupta Madan M, Nagegowda Dinesh A, Shasany Ajit K

机构信息

Biotechnology Division, Central Institute of Medicinal and Aromatic Plants-CSIR, PO CIMAP, Lucknow-226015, UP, India.

出版信息

Plant Cell Physiol. 2013 Aug;54(8):1238-52. doi: 10.1093/pcp/pct073. Epub 2013 May 14.

Abstract

Biosynthesis of eugenol shares its initial steps with that of lignin, involving conversion of hydroxycinnamic acids to their corresponding coenzyme A (CoA) esters by 4-coumarate:CoA ligases (4CLs). In this investigation, a 4CL (OS4CL) was identified from glandular trichome-rich tissue of Ocimum sanctum with high sequence similarity to an isoform (OB4CL_ctg4) from Ocimum basilicum. The levels of OS4CL and OB4CL_ctg4-like transcripts were highest in O. sanctum trichome, followed by leaf, stem and root. The eugenol content in leaf essential oil was positively correlated with the expression of OS4CL in the leaf at different developmental stages. Recombinant OS4CL showed the highest activity with p-coumaric acid, followed by ferulic, caffeic and trans-cinnamic acids. Transient RNA interference (RNAi) suppression of OS4CL in O. sanctum leaves caused a reduction in leaf eugenol content and trichome transcript level, with a considerable increase in endogenous p-coumaric, ferulic, trans-cinnamic and caffeic acids. A significant reduction in the expression levels was observed for OB4CL_ctg4-related transcripts in suppressed trichome compared with transcripts similar to the other four isoforms (OB4CL_ctg1, 2, 3 and 5). Sinapic acid and lignin content were also unaffected in RNAi suppressed leaf samples. Transient expression of OS4CL-green fluorescent protein fusion protein in Arabidopsis protoplasts was associated with the cytosol. These results indicate metabolite channeling of intermediates towards eugenol by a specific 4CL and is the first report demonstrating the involvement of 4CL in creation of virtual compartments through substrate utilization and committing metabolites for eugenol biosynthesis at an early stage of the pathway.

摘要

丁香酚的生物合成在起始步骤上与木质素的生物合成相同,包括通过4-香豆酸:辅酶A连接酶(4CLs)将羟基肉桂酸转化为其相应的辅酶A(CoA)酯。在本研究中,从富含腺毛的神圣罗勒组织中鉴定出一种4CL(OS4CL),其与罗勒的一种异构体(OB4CL_ctg4)具有高度序列相似性。OS4CL和OB4CL_ctg4样转录本的水平在神圣罗勒的腺毛中最高,其次是叶、茎和根。叶精油中的丁香酚含量在不同发育阶段与叶中OS4CL的表达呈正相关。重组OS4CL对香豆酸的活性最高,其次是阿魏酸、咖啡酸和反式肉桂酸。在神圣罗勒叶片中对OS4CL进行瞬时RNA干扰(RNAi)抑制导致叶丁香酚含量和腺毛转录本水平降低,内源性香豆酸、阿魏酸、反式肉桂酸和咖啡酸显著增加。与其他四种异构体(OB4CL_ctg1、2、3和5)相似的转录本相比,在受抑制的腺毛中观察到OB4CL_ctg4相关转录本的表达水平显著降低。在RNAi抑制的叶片样品中,芥子酸和木质素含量也未受影响。OS4CL-绿色荧光蛋白融合蛋白在拟南芥原生质体中的瞬时表达与细胞质有关。这些结果表明,特定的4CL将中间体代谢导向丁香酚,这是第一份证明4CL通过底物利用参与创建虚拟区室并在途径早期将代谢物用于丁香酚生物合成的报告。

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