Walker C J, Willows R D
Department of Biological Sciences, Clemson University, Clemson, SC 29634-1903, USA.
Biochem J. 1997 Oct 15;327 ( Pt 2)(Pt 2):321-33. doi: 10.1042/bj3270321.
Mg-chelatase catalyses the insertion of Mg into protoporphyrin IX (Proto). This seemingly simple reaction also is potentially one of the most interesting and crucial steps in the (bacterio)chlorophyll (Bchl/Chl)-synthesis pathway, owing to its position at the branch-point between haem and Bchl/Chl synthesis. Up until the level of Proto, haem and Bchl/Chl synthesis share a common pathway. However, at the point of metal-ion insertion there are two choices: Mg2+ insertion to make Bchl/Chl (catalysed by Mg-chelatase) or Fe2+ insertion to make haem (catalysed by ferrochelatase). Thus the relative activities of Mg-chelatase and ferrochelatase must be regulated with respect to the organism's requirements for these end products. How is this regulation achieved? For Mg-chelatase, the recent design of an in vitro assay combined with the identification of Bchl-biosynthetic enzyme genes has now made it possible to address this question. In all photosynthetic organisms studied to date, Mg-chelatase is a three-component enzyme, and in several species these proteins have been cloned and expressed in an active form. The reaction takes place in two steps, with an ATP-dependent activation followed by an ATP-dependent chelation step. The activation step may be the key to regulation, although variations in subunit levels during diurnal growth may also play a role in determining the flux through the Bchl/Chl and haem branches of the pathway.
镁螯合酶催化镁插入原卟啉IX(Proto)中。这个看似简单的反应可能也是(细菌)叶绿素(Bchl/Chl)合成途径中最有趣且关键的步骤之一,这是由于它处于血红素和Bchl/Chl合成的分支点位置。在Proto水平之前,血红素和Bchl/Chl合成共享一条共同途径。然而,在金属离子插入点存在两种选择:插入Mg2+以生成Bchl/Chl(由镁螯合酶催化)或插入Fe2+以生成血红素(由亚铁螯合酶催化)。因此,必须根据生物体对这些终产物的需求来调节镁螯合酶和亚铁螯合酶的相对活性。这种调节是如何实现的呢?对于镁螯合酶而言,最近体外测定方法的设计以及Bchl生物合成酶基因的鉴定使得回答这个问题成为可能。在迄今研究的所有光合生物中,镁螯合酶是一种由三个组分构成的酶,并且在几个物种中,这些蛋白质已被克隆并以活性形式表达。该反应分两步进行,先是一个依赖ATP的激活步骤,随后是一个依赖ATP的螯合步骤。激活步骤可能是调节的关键,尽管昼夜生长过程中亚基水平的变化也可能在决定通过该途径的Bchl/Chl和血红素分支的通量方面发挥作用。