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来自不动杆菌属菌株ADP1的羟基肉桂酸(hca)分解代谢基因受HcaR抑制,并由羟基肉桂酰辅酶A硫酯诱导。

Hydroxycinnamate (hca) catabolic genes from Acinetobacter sp. strain ADP1 are repressed by HcaR and are induced by hydroxycinnamoyl-coenzyme A thioesters.

作者信息

Parke Donna, Ornston L Nicholas

机构信息

Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, Connecticut 06520-8103, USA.

出版信息

Appl Environ Microbiol. 2003 Sep;69(9):5398-409. doi: 10.1128/AEM.69.9.5398-5409.2003.

Abstract

Hydroxycinnamates are plant products catabolized through the diphenol protocatechuate in the naturally transformable bacterium Acinetobacter sp. strain ADP1. Genes for protocatechuate catabolism are central to the dca-pca-qui-pob-hca chromosomal island, for which gene designations corresponding to catabolic function are dca (dicarboxylic acid), pca (protocatechuate), qui (quinate), pob (p-hydroxybenzoate), and hca (hydroxycinnamate). Acinetobacter hcaC had been cloned and shown to encode a hydroxycinnamate:coenzyme A (CoA) SH ligase that acts upon caffeate, p-coumarate, and ferulate, but genes for conversion of hydroxycinnamoyl-CoA to protocatechuate had not been characterized. In this investigation, DNA from pobS to an XbaI site 5.3 kb beyond hcaC was captured in the plasmid pZR8200 by a strategy that involved in vivo integration of a cloning vector near the hca region of the chromosome. pZR8200 enabled Escherichia coli to convert p-coumarate to protocatechuate in vivo. Sequence analysis of the newly cloned DNA identified five open reading frames designated hcaA, hcaB, hcaK, hcaR, and ORF1. An Acinetobacter strain with a knockout of HcaA, a homolog of hydroxycinnamoyl-CoA hydratase/lyases, was unable to grow at the expense of hydroxycinnamates, whereas a strain mutated in HcaB, homologous to aldehyde dehydrogenases, grew poorly with ferulate and caffeate but well with p-coumarate. A chromosomal fusion of lacZ to the hcaE gene was used to monitor expression of the hcaABCDE promoter. LacZ was induced over 100-fold by growth in the presence of caffeate, p-coumarate, or ferulate. The protein deduced to be encoded by hcaR shares 28% identity with the aligned E. coli repressor, MarR. A knockout of hcaR produced a constitutive phenotype, as assessed in the hcaE::lacZ-Km(r) genetic background, revealing HcaR to be a repressor as well. Expression of hcaE::lacZ in strains with knockouts in hcaA, hcaB, or hcaC revealed unambiguously that hydroxycinnamoyl-CoA thioesters relieve repression of the hcaABCDE genes by HcaR.

摘要

羟基肉桂酸酯是植物产物,在可自然转化的不动杆菌属ADP1菌株中通过二酚原儿茶酸进行分解代谢。原儿茶酸分解代谢的基因位于dca-pca-qui-pob-hca染色体岛上,其基因命名与分解代谢功能相对应,分别为dca(二羧酸)、pca(原儿茶酸)、qui(奎尼酸)、pob(对羟基苯甲酸)和hca(羟基肉桂酸酯)。不动杆菌属的hcaC基因已被克隆,并显示编码一种羟基肉桂酸酯:辅酶A(CoA)硫醇连接酶,该酶作用于咖啡酸、对香豆酸和阿魏酸,但羟基肉桂酰辅酶A转化为原儿茶酸的基因尚未得到表征。在本研究中,通过一种涉及在染色体hca区域附近体内整合克隆载体的策略,将从pobS到hcaC下游5.3 kb处的XbaI位点的DNA捕获到质粒pZR8200中。pZR8200使大肠杆菌能够在体内将对香豆酸转化为原儿茶酸。对新克隆的DNA进行序列分析,鉴定出五个开放阅读框,分别命名为hcaA、hcaB、hcaK、hcaR和ORF1。一株敲除了羟基肉桂酰辅酶A水合酶/裂解酶同源物HcaA的不动杆菌菌株,无法以羟基肉桂酸酯为代价生长,而一株在与醛脱氢酶同源的HcaB中发生突变的菌株,以阿魏酸和咖啡酸生长较差,但以对香豆酸生长良好。将lacZ与hcaE基因进行染色体融合,用于监测hcaABCDE启动子的表达。在咖啡酸、对香豆酸或阿魏酸存在下生长时,LacZ的诱导倍数超过100倍。推导由hcaR编码的蛋白质与比对的大肠杆菌阻遏蛋白MarR有28%的同一性。在hcaE::lacZ-Km(r)遗传背景下评估,敲除hcaR产生组成型表型,表明HcaR也是一种阻遏蛋白。在hcaA、hcaB或hcaC敲除的菌株中hcaE::lacZ的表达明确表明,羟基肉桂酰辅酶A硫酯可缓解HcaR对hcaABCDE基因的阻遏。

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