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积累不同类型α-葡聚糖的蓝细菌分支酶的直系同源物具有共同的反应产物特异性。

Orthologs of Branching Enzymes from Cyanobacteria Accumulating Distinct Types of α-Glucans Share Common Reaction Product Specificity.

作者信息

Kuroki Miho, Matsuura Yuuki, Suzuki Eiji, Suzuki Ryuichiro

机构信息

1 Department of Biological Production, Faculty of Bioresource Sciences, Akita Prefectural University.

出版信息

J Appl Glycosci (1999). 2025 May 20;72(2):7202105. doi: 10.5458/jag.7202105. eCollection 2025.

Abstract

Cyanobacteria generally accumulate glycogen in their cells as a photosynthetic product. Interestingly, several unicellular diazotrophic species accumulate insoluble branched polysaccharide called cyanobacterial starch. Branching enzymes (BEs) belonging to glycoside hydrolase family 13 are universally found in the phylum cyanobacteria and are key enzymes in determining the branching pattern of polysaccharides. Many of the glycogen-producing cyanobacteria possess a single BE isozyme (BE1), while multiple BE isozymes (BE1, BE2, and BE3) are present in cyanobacterial starch-producing strains. A previous study suggested that the coexistence of three BE isozymes is essential for the trait of cyanobacterial starch-production. In this study, to obtain clues regarding the significance of the coexistence of the multiple isozymes, biochemical characterization using 11 purified recombinant BEs from both glycogen- and cyanobacterial starch-producing strains was performed. The BE1 and BE2 isozymes produced glucan chains with degree of polymerization (DP) 6 and 7 specifically, while BE3 isozymes produced short (DP 5-12) and long chains (DP 30-40) slightly. The BE1 and BE2 isozymes showed high activity, but those of BE3 isozymes were significantly low. The BE1 isozyme from cyanobacterial starch-producing sp. CLg1 showed markedly low activity. The BE1 and BE2 isozymes form cyanobacterial starch-producing PCC 8802 lacking BE3 isozyme shared similar reaction product specificity. These results suggested that the presence of the three isozymes is not essential and the roles of BE isozymes may vary depending on cyanobacterial species. These findings should deepen our understanding of the significance of BE isozymes in the biosynthesis of cyanobacterial starch.

摘要

蓝细菌通常在其细胞中积累糖原作为光合产物。有趣的是,一些单细胞固氮物种积累一种称为蓝细菌淀粉的不溶性支链多糖。属于糖苷水解酶家族13的分支酶(BEs)在蓝细菌门中普遍存在,是决定多糖分支模式的关键酶。许多产生糖原的蓝细菌拥有单一的BE同工酶(BE1),而在产生蓝细菌淀粉的菌株中存在多种BE同工酶(BE1、BE2和BE3)。先前的一项研究表明,三种BE同工酶的共存对于蓝细菌淀粉产生的特性至关重要。在本研究中,为了获得关于多种同工酶共存意义的线索,使用从产生糖原和蓝细菌淀粉的菌株中纯化的11种重组BE进行了生化特性分析。BE1和BE2同工酶分别特异性地产生聚合度(DP)为6和7的葡聚糖链,而BE3同工酶略微产生短链(DP 5 - 12)和长链(DP 30 - 40)。BE1和BE2同工酶显示出高活性,但BE3同工酶的活性明显较低。来自产生蓝细菌淀粉的CLg1菌株的BE1同工酶活性明显较低。缺乏BE3同工酶的产生蓝细菌淀粉的PCC 8802菌株的BE1和BE2同工酶具有相似的反应产物特异性。这些结果表明三种同工酶的存在并非必不可少,并且BE同工酶的作用可能因蓝细菌种类而异。这些发现应加深我们对BE同工酶在蓝细菌淀粉生物合成中的意义的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/facd/12149516/92e3804f2e08/JAG-72-7202105-g01.jpg

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