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通过在谷氨酸棒杆菌中异源表达的不同蓝藻素合成酶将替代氨基酸掺入蓝藻素中。

Incorporation of alternative amino acids into cyanophycin by different cyanophycin synthetases heterologously expressed in Corynebacterium glutamicum.

作者信息

Wördemann Ramona, Wiefel Lars, Wendisch Volker F, Steinbüchel Alexander

机构信息

Institut für Molekulare Mikrobiologie und Biotechnologie (IMMB), Westfälische Wilhelms-Universität Münster, Corrensstraße 3, 48149, Münster, Germany.

Faculty of Biology & CeBiTec, Bielefeld University, Universitätsstraße 25, 33615, Bielefeld, Germany.

出版信息

AMB Express. 2021 Apr 15;11(1):55. doi: 10.1186/s13568-021-01217-5.

Abstract

Cyanophycin (multi-L-arginyl-poly-L-aspartic acid; also known as cyanophycin grana peptide [CGP]) is a biopolymer that could be used in various fields, for example, as a potential precursor for the synthesis of polyaspartic acid or for the production of CGP-derived dipeptides. To extend the applications of this polymer, it is therefore of interest to synthesize CGP with different compositions. A recent re-evaluation of the CGP synthesis in C. glutamicum has shown that C. glutamicum is a potentially interesting microorganism for CGP synthesis with a high content of alternative amino acids. This study shows that the amount of alternative amino acids can be increased by using mutants of C. glutamicum with altered amino acid biosynthesis. With the DM1729 mutant, the lysine content in the polymer could be increased up to 33.5 mol%. Furthermore, an ornithine content of up to 12.6 mol% was achieved with ORN2(P). How much water-soluble or insoluble CGP is synthesized is strongly related to the used cyanophycin synthetase. CphA synthesizes soluble CGP exclusively. However, soluble CGP could also be isolated from cells expressing CphAΔ1 or CphAΔ1_C595S in addition to insoluble CGP in all examined strains. The point mutation in CphAΔ1_C595S partially resulted in a higher lysine content. In addition, the CGP content could be increased to 36% of the cell dry weight under optimizing growth conditions in C. glutamicum ATCC13032. All known alternative major amino acids for CGP synthesis (lysine, ornithine, citrulline, and glutamic acid) could be incorporated into CGP in C. glutamicum.

摘要

藻青素(多聚-L-精氨酰-聚-L-天冬氨酸;也称为藻青素颗粒肽[CGP])是一种生物聚合物,可用于各个领域,例如,作为合成聚天冬氨酸的潜在前体或用于生产源自CGP的二肽。为了扩展这种聚合物的应用,因此合成具有不同组成的CGP很有意义。最近对谷氨酸棒杆菌中CGP合成的重新评估表明,谷氨酸棒杆菌是一种潜在的有趣微生物,可用于合成具有高含量替代氨基酸的CGP。本研究表明,通过使用氨基酸生物合成发生改变的谷氨酸棒杆菌突变体,可以增加替代氨基酸的含量。使用DM1729突变体,聚合物中的赖氨酸含量可提高至33.5摩尔%。此外,使用ORN2(P)可实现高达12.6摩尔%的鸟氨酸含量。合成的水溶性或不溶性CGP的量与所使用的藻青素合成酶密切相关。CphA仅合成可溶性CGP。然而,在所有检测菌株中,除了不溶性CGP外,还可从表达CphAΔ1或CphAΔ1_C595S的细胞中分离出可溶性CGP。CphAΔ1_C595S中的点突变部分导致赖氨酸含量更高。此外,在谷氨酸棒杆菌ATCC13032的优化生长条件下,CGP含量可提高至细胞干重的36%。CGP合成的所有已知替代主要氨基酸(赖氨酸、鸟氨酸、瓜氨酸和谷氨酸)均可掺入谷氨酸棒杆菌中的CGP中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b175/8050183/2e3cebd41e9e/13568_2021_1217_Fig1_HTML.jpg

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