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麻疯树H(+) - 焦磷酸酶的分子克隆、表达分析及功能鉴定

Molecular Cloning, Expression Analysis, and Functional Characterization of the H(+)-Pyrophosphatase from Jatropha curcas.

作者信息

Yang Yumei, Luo Zhu, Zhang Mengru, Liu Chang, Gong Ming, Zou Zhurong

机构信息

School of Life Sciences, Engineering Research Center of Sustainable Development and Utilization of Biomass Energy, Ministry of Education, Key Laboratory of Biomass Energy and Environmental Biotechnology of Yunnan Province, Yunnan Normal University, Kunming, 650500, Yunnan, China.

出版信息

Appl Biochem Biotechnol. 2016 Apr;178(7):1273-85. doi: 10.1007/s12010-015-1944-0. Epub 2015 Dec 7.

Abstract

H(+)-pyrophosphatase (H(+)-PPase) is a primary pyrophosphate (PPi)-energized proton pump to generate electrochemical H(+) gradient for ATP production and substance translocations across membranes. It plays an important role in stress adaptation that was intensively substantiated by numerous transgenic plants overexpressing H(+)-PPases yet devoid of any correlated studies pointing to the elite energy plant, Jatropha curcas. Herein, we cloned the full length of J. curcas H(+)-PPase (JcVP1) complementary DNA (cDNA) by reverse transcription PCR, based on the assembled sequence of its ESTs highly matched to Hevea brasiliensis H(+)-PPase. This gene encodes a polypeptide of 765 amino acids that was predicted as a K(+)-dependent H(+)-PPase evolutionarily closest to those of other Euphorbiaceae plants. Many cis-regulatory elements relevant to environmental stresses, molecular signals, or tissue-specificity were identified by promoter prediction within the 1.5-kb region upstream of JcVP1 coding sequence. Meanwhile, the responses of JcVP1 expression to several common abiotic stresses (salt, drought, heat, cold) were characterized with a considerable accordance with the inherent stress tolerance of J. curcas. Moreover, we found that the heterologous expression of JcVP1 could significantly improve the salt tolerance in both recombinant Escherichia coli and Saccharomyces cerevisiae, and this effect could be further fortified in yeast by N-terminal addition of a vacuole-targeting signal peptide from the H(+)-PPase of Trypanosoma cruzi.

摘要

H(+)-焦磷酸酶(H(+)-PPase)是一种主要的焦磷酸(PPi)驱动质子泵,可产生电化学H(+)梯度以用于ATP生成以及物质跨膜转运。它在胁迫适应中发挥重要作用,众多过表达H(+)-PPase的转基因植物充分证实了这一点,但尚未有任何相关研究指向优良能源植物麻疯树。在此,我们基于与巴西橡胶树H(+)-PPase高度匹配的EST组装序列,通过逆转录PCR克隆了麻疯树H(+)-PPase(JcVP1)全长互补DNA(cDNA)。该基因编码一个765个氨基酸的多肽,预测为一种依赖K(+)的H(+)-PPase,在进化上与其他大戟科植物的最为接近。通过对JcVP1编码序列上游1.5 kb区域的启动子预测,鉴定出许多与环境胁迫、分子信号或组织特异性相关的顺式调控元件。同时,JcVP1表达对几种常见非生物胁迫(盐、干旱、热、冷)的响应特征与麻疯树固有的胁迫耐受性相当一致。此外,我们发现JcVP1的异源表达可显著提高重组大肠杆菌和酿酒酵母的耐盐性,并且通过在N端添加来自克氏锥虫H(+)-PPase的液泡靶向信号肽,这种效果在酵母中可进一步增强。

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