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辣椒中响应UV-C和机械损伤诱导的羟基肉桂酰辅酶A:酪胺N-(羟基肉桂酰)转移酶的克隆与特性分析

Cloning and characterization of a hydroxycinnamoyl-CoA:tyramine N-(hydroxycinnamoyl)transferase induced in response to UV-C and wounding from Capsicum annuum.

作者信息

Back K, Jang S M, Lee B C, Schmidt A, Strack D, Kim K M

机构信息

Department of Genetic Engineering, Biotechnology Research Institute, Chonnam National University, Kwangju, 500-757 South Korea.

出版信息

Plant Cell Physiol. 2001 May;42(5):475-81. doi: 10.1093/pcp/pce060.

Abstract

Hydroxycinnamoyl-CoA : tyramine N-(hydroxycinnamoyl) transferase (THT) is a pivotal enzyme in the synthesis of N-(hydroxycinnamoyl)-amines, which are associated with cell wall fortification in plants. The cDNA encoding THT was cloned from the leaves of UV-C treated Capsicum annuum (hot pepper) using a differential screening strategy. The predicted protein encoded by the THT cDNA is 250 amino acids in length and has a relative molecular mass of 28,221. The protein sequence derived from the cDNA shares 76% and 67% identity with the potato and tobacco THT protein sequences, respectively. The recombinant pepper THT enzyme was purified using a bacterial overexpression system. The purified enzyme has a broad substrate specificity including acyl donors such as cinnamoyl-, sinapoyl-, feruloyl-, caffeoyl-, and 4-coumaroyl-CoA and acceptors such as tyramine and octopamine. In UV-C treated plants, the THT mRNA was strongly induced in leaves, and the elevated level of expression was stable for up to 36 h. THT mRNA also increased in leaves that were detached from the plant but not treated with UV-C. THT expression was measured in different plant tissues, and was constitutive at a similar level in leaf, root, stem, flower and fruit. Induction of THT mRNA was correlated with an increase in THT protein.

摘要

羟基肉桂酰辅酶A:酪胺N-(羟基肉桂酰)转移酶(THT)是N-(羟基肉桂酰)胺合成中的关键酶,N-(羟基肉桂酰)胺与植物细胞壁强化有关。采用差异筛选策略,从经紫外线-C处理的辣椒叶片中克隆了编码THT的cDNA。THT cDNA预测编码的蛋白质长度为250个氨基酸,相对分子质量为28221。该cDNA推导的蛋白质序列与马铃薯和烟草的THT蛋白质序列分别具有76%和67%的同一性。利用细菌过表达系统纯化了重组辣椒THT酶。纯化后的酶具有广泛的底物特异性,包括肉桂酰-CoA、芥子酰-CoA、阿魏酰-CoA、咖啡酰-CoA和4-香豆酰-CoA等酰基供体,以及酪胺和章鱼胺等受体。在紫外线-C处理的植物中,THT mRNA在叶片中强烈诱导表达,且表达水平升高在长达36小时内保持稳定。从植株上摘下但未用紫外线-C处理的叶片中,THT mRNA也有所增加。在不同植物组织中检测了THT的表达,其在叶、根、茎、花和果实中的表达水平相似且呈组成型。THT mRNA的诱导与THT蛋白的增加相关。

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