Biochemical characterization of phosphoenolpyruvate carboxykinases from multiple species of brown algae.

IF 3.4 3区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Jian-Qiang Jin, Yuusuke Yokooji, Toshiyuki Shibata, Haruyuki Atomi
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Abstract

Phosphoenolpyruvate carboxykinase (PEPCK) is involved in the conversion of phosphoenolpyruvate (PEP) to oxaloacetate (OAA). In addition to playing a role in gluconeogenesis in various organisms, PEPCK also functions in the C4 cycle to concentrate CO2 for photosynthesis in some C4 plants. Brown algae harbor genes related to the C4 cycle, including the PEPCK gene, and are proposed to employ a C4 cycle-like pathway. However, little is known about the CO2-concentrating mechanisms and the properties of the enzymes involved in brown algae. Here, we obtained soluble recombinant PEPCKs of five brown algae and carried out biochemical analyses. The five PEPCKs were ATP-dependent and displayed similar or higher specific activities compared with their counterparts from other organisms. Phosphoenolpyruvate carboxykinase from Ishige okamurae (Io-PEPCK) exhibited the highest specific activity in both carboxylation and decarboxylation directions, with values of 48.4 and 63.3 μmol · min-1 · mg-1, respectively. Additionally, Io-PEPCK displayed a kcat/KmHCO3 value of 9.2 × 103 · M-1 · s-1, much higher than those of previously characterized PEPCKs. The response of PEPCK activity to various metabolites showed that citrate and malate inhibited the carboxylation but promoted the decarboxylation activity of Io-PEPCK. Various ATP concentrations resulted in different degrees of inhibition on the carboxylation activity of PEPCK, suggesting that ATP concentration potentially regulates PEPCK activity in brown algae. The analysis of cell extracts from I. okamurae suggested that PEPCK rather than PEPC dominates the carboxylation in this brown alga. Based on previous knowledge and the results presented here, a model for a C4 cycle-like pathway in brown algae has been proposed.

多种褐藻磷酸烯醇丙酮酸羧化激酶的生化特性研究。
磷酸烯醇丙酮酸羧激酶(PEPCK)参与磷酸烯醇丙酮酸(PEP)转化为草酰乙酸(OAA)。除了在各种生物的糖异生中发挥作用外,PEPCK还在C4循环中发挥作用,在一些C4植物中集中二氧化碳进行光合作用。褐藻含有与C4循环相关的基因,包括PEPCK基因,并被提出采用C4循环样途径。然而,人们对褐藻中涉及的二氧化碳浓缩机制和酶的特性知之甚少。在此,我们获得了5种褐藻的可溶性重组PEPCKs,并进行了生化分析。这5种PEPCKs是atp依赖性的,与其他生物的PEPCKs相比,它们表现出相似或更高的特异性活性。石重冈村磷酸烯醇丙酮酸羧激酶(Io-PEPCK)在羧化和脱羧方向上的比活性最高,分别为48.4和63.3 μmol·min-1·mg-1。此外,Io-PEPCK的kcat/KmHCO3值为9.2 × 103·M-1·s-1,远高于先前表征的PEPCKs。PEPCK活性对各种代谢物的响应表明,柠檬酸盐和苹果酸盐抑制了Io-PEPCK的羧化,但促进了Io-PEPCK的脱羧活性。不同浓度的ATP对PEPCK羧化活性有不同程度的抑制作用,表明ATP浓度可能调控褐藻PEPCK活性。对okamurae细胞提取物的分析表明,在这种褐藻中,PEPCK而不是PEPC主导羧基化。基于先前的知识和本文提出的结果,我们提出了一个褐藻中C4循环样途径的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Phycology
Journal of Phycology 生物-海洋与淡水生物学
CiteScore
6.50
自引率
3.40%
发文量
69
审稿时长
2 months
期刊介绍: The Journal of Phycology was founded in 1965 by the Phycological Society of America. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, taxonomist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, acquaculturist, systematist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems.
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