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黄色粘球菌的番茄红素单环化酶向双环化酶的转化。

Conversion of the lycopene monocyclase of Myxococcus xanthus into a bicyclase.

作者信息

Iniesta Antonio A, Cervantes María, Murillo Francisco J

机构信息

Departamento de Genética y Microbiología, Facultad de Biología, Universidad de Murcia, Murcia, Spain.

出版信息

Appl Microbiol Biotechnol. 2008 Jul;79(5):793-802. doi: 10.1007/s00253-008-1481-7. Epub 2008 Apr 24.

Abstract

Depending on the cyclized hydrocarbon backbone ends, carotenoids can be acyclic, monocyclic, or bicyclic. Lycopene cyclases are the enzymes responsible for catalyzing the formation of cyclic carotenoids from acyclic lycopene. Myxococcus xanthus is a bacterium that accumulates monocyclic carotenoids such as a glycoside ester of myxobacton. We show here that this bacterium possesses a cyclase belonging to the group of the heterodimeric cyclases CrtYc and CrtYd. These two individual proteins are encoded by crtYc and crtYd, which are located in the carotenogenic carA operon of the carB-carA gene cluster, and the presence of both is essential for the cyclization of lycopene. CrtYc and CrtYd from M. xanthus form a heterodimeric cyclase with beta-monocyclic activity, which converts lycopene into monocyclic gamma-carotene, but not into bicyclic beta-carotene like most beta-cyclases. This is an unusual case where two different proteins constitute a lycopene cyclase enzyme with monocyclic activity. We were able to convert this lycopene monocyclase into a lycopene bicyclase enzyme producing beta-carotene, by fusing both proteins with an extra transmembrane domain. The chimeric protein appears to allow a proper membranal disposition of both CrtYc and CrtYd, to perform two cyclization reactions, while a hybrid without the extra transmembrane helix performs only one cyclization.

摘要

根据环化烃主链末端的不同,类胡萝卜素可以是无环的、单环的或双环的。番茄红素环化酶是负责催化由无环番茄红素形成环化类胡萝卜素的酶。黄色粘球菌是一种积累单环类胡萝卜素(如粘杆菌素糖苷酯)的细菌。我们在此表明,这种细菌拥有一种属于异二聚体环化酶CrtYc和CrtYd组的环化酶。这两种单独的蛋白质由crtYc和crtYd编码,它们位于carB - carA基因簇的类胡萝卜素生成carA操纵子中,并且两者的存在对于番茄红素的环化至关重要。来自黄色粘球菌的CrtYc和CrtYd形成具有β - 单环活性的异二聚体环化酶,它将番茄红素转化为单环γ - 胡萝卜素,但不像大多数β - 环化酶那样转化为双环β - 胡萝卜素。这是一种不寻常的情况,即两种不同的蛋白质构成具有单环活性的番茄红素环化酶。通过将这两种蛋白质与一个额外的跨膜结构域融合,我们能够将这种番茄红素单环化酶转化为产生β - 胡萝卜素的番茄红素双环化酶。嵌合蛋白似乎允许CrtYc和CrtYd在膜上正确定位,以进行两次环化反应,而没有额外跨膜螺旋的杂合体仅进行一次环化。

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