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血红素加氧酶:一种具有多种功能的光合生物酶,其在光敏色素生色团生物合成、细胞信号转导和防御机制中的作用。

Haem oxygenase: A functionally diverse enzyme of photosynthetic organisms and its role in phytochrome chromophore biosynthesis, cellular signalling and defence mechanisms.

机构信息

Department of Botany, Jai Narain Vyas University, Jodhpur, 342001, India.

出版信息

Plant Cell Environ. 2018 Mar;41(3):483-500. doi: 10.1111/pce.13116. Epub 2018 Feb 6.

Abstract

Haem oxygenase (HO) is a universal enzyme that catalyses stereospecific cleavage of haem to BV IX α and liberates Fe ion and CO as by-product. Beside haem degradation, it has important functions in plants that include cellular defence, stomatal regulation, iron mobilization, phytochrome chromophore synthesis, and lateral root formation. Phytochromes are an extended family of photoreceptors with a molecular mass of 250 kDa and occur as a dimer made up of 2 equivalent subunits of 125 kDa each. Each subunit is made of two components: the chromophore, a light-capturing pigment molecule and the apoprotein. Biosynthesis of phytochrome (phy) chromophore includes the oxidative splitting of haem to biliverdin IX by an enzyme HO, which is the decisive step in the biosynthesis. In photosynthetic organisms, BVα is reduced to 3Z PΦB by a ferredoxin-dependent PΦB synthase that finally isomerised to PΦB. The synthesized PΦB assembles with the phytochrome apoprotein in the cytoplasm to generate holophytochrome. Thus, necessary for photomorphogenesis in plants, which has confirmed from the genetic studies, conducted on Arabidopsis thaliana and pea. Besides the phytochrome chromophore synthesis, the review also emphasises on the current advances conducted in plant HO implying its developmental and defensive role.

摘要

血红素加氧酶(HO)是一种普遍存在的酶,能够立体特异性地催化血红素裂解为 BV IX α,并释放出 Fe 离子和 CO 作为副产物。除了血红素降解,它在植物中还具有重要的功能,包括细胞防御、气孔调节、铁动员、光敏色素生色团合成和侧根形成。光敏色素是一个具有 250 kDa 分子量的光受体大家族,以由两个 125 kDa 等当量亚基组成的二聚体形式存在。每个亚基由两个组成部分组成:生色团,一种光捕获色素分子和脱辅基蛋白。光敏色素(phy)生色团的生物合成包括 HO 将血红素氧化裂解为胆绿素 IX,这是生物合成的关键步骤。在光合生物中,BVα 被依赖于铁氧还蛋白的 PΦB 合成酶还原为 3Z PΦB,最终转化为 PΦB。合成的 PΦB 与质体色素脱辅基蛋白在细胞质中组装生成全光敏色素。因此,这对于植物的光形态建成是必要的,这已经从对拟南芥和豌豆的遗传研究中得到了证实。除了光敏色素生色团合成,综述还强调了植物 HO 的当前研究进展,表明其在发育和防御方面的作用。

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