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藻红假单胞菌alg1含有对内切型和外切型藻酸盐裂解酶均有效的单一同源物,可高效进行藻酸盐解聚。

Falsirhodobacter sp. alg1 Harbors Single Homologs of Endo and Exo-Type Alginate Lyases Efficient for Alginate Depolymerization.

作者信息

Mori Tetsushi, Takahashi Mami, Tanaka Reiji, Miyake Hideo, Shibata Toshiyuki, Chow Seinen, Kuroda Kouichi, Ueda Mitsuyoshi, Takeyama Haruko

机构信息

Faculty of Science and Engineering, Waseda University, Tokyo, Japan.

Department of Life Sciences, Graduate School of Bioresources, Mie University, Mie, Japan.

出版信息

PLoS One. 2016 May 13;11(5):e0155537. doi: 10.1371/journal.pone.0155537. eCollection 2016.

Abstract

Alginate-degrading bacteria play an important role in alginate degradation by harboring highly efficient and unique alginolytic genes. Although the general mechanism for alginate degradation by these bacteria is fairly understood, much is still required to fully exploit them. Here, we report the isolation of a novel strain, Falsirhodobacter sp. alg1, the first report for an alginate-degrading bacterium from the family Rhodobacteraceae. Genome sequencing reveals that strain alg1 harbors a primary alginate degradation pathway with only single homologs of an endo- and exo-type alginate lyase, AlyFRA and AlyFRB, which is uncommon among such bacteria. Subsequent functional analysis showed that both enzymes were extremely efficient to depolymerize alginate suggesting evolutionary interests in the acquirement of these enzymes. The exo-type alginate lyase, AlyFRB in particular could depolymerize alginate without producing intermediate products making it a highly efficient enzyme for the production of 4-deoxy-L-erythro-5-hexoseulose uronic acid (DEH). Based on our findings, we believe that the discovery of Falsirhodobacter sp. alg1 and its alginolytic genes hints at the potentiality of a more diverse and unique population of alginate-degrading bacteria.

摘要

藻酸盐降解细菌通过携带高效且独特的藻酸酶基因在藻酸盐降解中发挥重要作用。尽管对这些细菌降解藻酸盐的一般机制已有相当的了解,但要充分开发利用它们仍有许多工作要做。在此,我们报告了一种新菌株——藻红假单胞菌属alg1的分离,这是红杆菌科中藻酸盐降解细菌的首次报道。基因组测序表明,alg1菌株拥有一条主要的藻酸盐降解途径,仅含有一种内切型和一种外切型藻酸裂解酶AlyFRA和AlyFRB的单一同源物,这在这类细菌中并不常见。随后的功能分析表明,这两种酶在解聚藻酸盐方面效率极高,这表明在获取这些酶方面具有进化意义。特别是外切型藻酸裂解酶AlyFRB可以解聚藻酸盐而不产生中间产物,使其成为生产4-脱氧-L-赤藓糖-5-己糖醛酸(DEH)的高效酶。基于我们的发现,我们认为藻红假单胞菌属alg1及其藻酸酶基因的发现暗示了存在更多样化和独特的藻酸盐降解细菌群体的可能性。

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