玫瑰花耐多药型ABC转运基因Crmdr1的克隆与特性研究

Hongbin Jin, Donghui Liu, Kaijing Zuo, Yifu Gong, Zhiqi Miao, Yuhui Chen, Weiwei Ren, Xiaofen Sun, Kexuan Tang
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引用次数: 8

摘要

利用cDNA末端快速扩增技术(RACE),从具有120多种次生代谢产物的药用植物Catharanthus roseus中克隆了一个编码耐多药样ABC转运蛋白的新基因。这个基因(命名为Crmdr1;GenBank登记号编号:DQ660356)全长4395 bp,开放阅读框3801 bp,编码1266个氨基酸,分子量为137.1 kDa的预测多肽。CrMDR1蛋白在氨基酸水平上与拟南芥(AAD31576)、黄豆(CjMDR)、棉花(GhMDR)和小麦(TaMDR)的MDR蛋白分别具有59.8%、62.5%、60.0和58.2%的同源性。Southern blot分析显示,Crmdr1是一个低拷贝基因。表达谱分析显示,Crmdr1在根、茎和叶中均有组成表达,但在叶中的表达量较低。结构域分析表明,CrMDR1蛋白具有2个跨膜结构域(TMDs)和2个核苷酸结合结构域(NBDs),排列方向为“TMD1-NBD1-TMD2-NBD2”,与其他MDR转运蛋白一致。在nbd中发现了所有ABC转运蛋白共有的三个特征基序,“Walker A”、“Walker B”和C基序。这些结果表明,CrMDR1是一种mdr样ABC转运蛋白,可能参与了次生代谢物的转运和积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular cloning and characterization of Crmdr1, a novel MDR-type ABC transporter gene from Catharanthus roseus.

A novel gene encoding a MDR-like ABC transporter protein was cloned from Catharanthus roseus, a medicinal plant with more than 120 kinds of secondary metabolites, through rapid amplification of cDNA ends (RACE). This gene (named as Crmdr1; GenBank accession no.: DQ660356) had a total length of 4395 bp with an open reading frame of 3801 bp, and encoded a predicted polypeptide of 1266 amino acids with a molecular weight of 137.1 kDa. The CrMDR1 protein shared 59.8, 62.5, 60.0 and 58.2% identity with other MDR proteins isolated from Arabidopsis thaliana (AAD31576), Coptis japonica (CjMDR), Gossypium hirsutum (GhMDR) and Triticum aestivum (TaMDR) at amino acid level, respectively. Southern blot analysis showed that Crmdr1 was a low-copy gene. Expression pattern analysis revealed that Crmdr1 constitutively expressed in the root, stem and leaf, but with lower expression in leaf. The domains analysis showed that CrMDR1 protein possessed two transmembrane domains (TMDs) and two nucleotide binding domains (NBDs) arranging in "TMD1-NBD1-TMD2-NBD2" direction, which is consistent with other MDR transporters. Within NBDs three characteristic motifs common to all ABC transporters, "Walker A", "Walker B" and C motif, were found. These results indicate that CrMDR1 is a MDR-like ABC transporter protein that may be involved in the transport and accumulation of secondary metabolites.

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