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通过对从锡金喜马拉雅山冰雪覆盖土壤中分离的产脂肪酶假单胞菌 HS6 的比较基因组分析鉴定出的耐寒特性,以及对脂肪酶的分子模拟以实现广泛的底物特异性。

Cold-adaptive traits identified by comparative genomic analysis of a lipase-producing Pseudomonas sp. HS6 isolated from snow-covered soil of Sikkim Himalaya and molecular simulation of lipase for wide substrate specificity.

机构信息

Institute of Bioresources and Sustainable Development, Regional Centre, Tadong, Sikkim, India.

CSIR-National Institute for Interdisciplinary Science and Technology (NIIST), Thiruvananthapuram, Kerala, India.

出版信息

Curr Genet. 2022 Aug;68(3-4):375-391. doi: 10.1007/s00294-022-01241-3. Epub 2022 May 9.

DOI:10.1007/s00294-022-01241-3
PMID:35532798
Abstract

The genomic analysis of industrially important bacteria can help in understanding their capability to withstand extreme environments and shed light on their metabolic capabilities. The whole genome of a previously reported broad temperature active lipase-producing Pseudomonas sp. HS6, isolated from snow-covered soil of the Sikkim Himalayan Region, was analyzed to understand the capability of the bacterium to withstand cold temperatures and study its lipolytic nature. Pseudomonas sp. HS6 was found to be psychrotolerant with an optimal growth temperature ranging between 25 and 30 °C, with the ability to grow at 5 °C. The genome harbours various cold-adaptation genes, such as cold-shock proteins, fatty acid alteration, and cold stress-tolerance genes, supporting the psychrotolerant nature of the organism. The comparative analysis of Pseudomonas sp. HS6 genome showed the presence of amino acid substitutions in genes that favor efficient functioning and flexibility at cold temperatures. Genome mining revealed the presence of four triacylglycerol lipases, among which the putative lipase 3 was highly similar to the broad temperature-active lipase purified and characterized in our previous study. In silico studies of putative lipase 3 revealed broad substrate specificity with partial and no inhibition of the enzyme activity in the presence of PMSF and orlistat. The presence of genes associated with cold adaptations and true lipases with activity at broad temperature and substrate specificity in the genome of Pseudomonas sp. HS6 makes this bacterium a suitable candidate for industrial applications.

摘要

对工业上重要的细菌进行基因组分析有助于了解它们在极端环境下的生存能力,并揭示其代谢能力。对先前从锡金喜马拉雅地区积雪土壤中分离到的广温活性脂肪酶产生菌 Pseudomonas sp. HS6 的全基因组进行了分析,以了解该细菌耐受低温的能力,并研究其脂肪酶特性。Pseudomonas sp. HS6 被发现具有耐寒性,最佳生长温度范围在 25-30°C 之间,能够在 5°C 下生长。基因组中存在各种适应寒冷的基因,如冷休克蛋白、脂肪酸改变和耐冷应激基因,支持该生物的耐寒特性。Pseudomonas sp. HS6 基因组的比较分析显示,在有利于在低温下高效发挥作用和灵活性的基因中存在氨基酸取代。基因组挖掘显示存在四种三酰基甘油脂肪酶,其中假定的脂肪酶 3 与我们之前研究中纯化和表征的广温活性脂肪酶高度相似。对假定的脂肪酶 3 的计算机研究表明,该酶具有广泛的底物特异性,在存在 PMSF 和奥利司他的情况下,该酶的部分活性或无活性被抑制。Pseudomonas sp. HS6 基因组中存在与寒冷适应相关的基因和在广泛温度和底物特异性下具有活性的真正脂肪酶,这使得该细菌成为工业应用的合适候选者。

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J Genet Eng Biotechnol. 2018 Dec;16(2):319-325. doi: 10.1016/j.jgeb.2018.04.006. Epub 2018 May 7.