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Recent Advances in the Physicochemical Properties and Biotechnological Application of Vitreoscilla Hemoglobin

机译:玻璃体化学性质和生物技术应用的最新进展

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摘要

Vitreoscilla hemoglobin (VHb), the first discovered bacterial hemoglobin, is a soluble heme-binding protein with a faster rate of oxygen dissociation. Since it can enhance cell growth, product synthesis and stress tolerance, VHb has been widely applied in the field of metabolic engineering for microorganisms, plants, and animals. Especially under oxygen-limited conditions, VHb can interact with terminal oxidase to deliver enough oxygen to achieve high-cell-density fermentation. In recent years, with the development of bioinformatics and synthetic biology, several novel physicochemical properties and metabolic regulatory effects of VHb have been discovered and numerous strategies have been utilized to enhance the expression level of VHb in various hosts, which greatly promotes its applications in biotechnology. Thus, in this review, the new information regarding structure, function and expressional tactics for VHb is summarized to understand its latest applications and pave a new way for the future improvement of biosynthesis for other products.
机译:Vitreoscilla血红蛋白(VHB)是第一个发现的细菌血红蛋白,是一种可溶性血红素结合蛋白,其氧解离速率更快。由于它可以提高细胞生长,产品合成和应力耐受性,因此VHB已广泛应用于微生物,植物和动物的代谢工程领域。特别是在缺氧条件下,VHB可以与末端氧化酶相互作用以提供足够的氧气以实现高电池密度发酵。近年来,随着生物信息化学和合成生物学的发展,已经发现了几种新的物理化学性质和VHB的代谢调节作用,并且已经利用了许多策略来增强各个宿主中VHB的表达水平,这大大促进了其在生物技术中的应用。因此,在本次审查中,总结了关于VHB的结构,功能和表达策略的新信息,以了解其最新的应用,并为其他产品的未来改善生物合成而铺平了新的方式。

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