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Haloadaptation: insights from comparative modeling studies between halotolerant and non-halotolerant dehalogenases

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DataCite Commons2020-08-26 更新2024-07-27 收录
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https://tandf.figshare.com/articles/Haloadaptation_insights_from_comparative_modeling_studies_between_halotolerant_and_non-halotolerant_dehalogenases/9785228/1
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Halophiles are extremophilic microorganisms that grow optimally at high salt concentrations by producing a myriad of equally halotolerant enzymes. Structural haloadaptation of these enzymes adept to thriving under high-salt environments, though are not fully understood. Herein, the study attempts an <i>in silico</i> investigation to identify and comprehend the evolutionary structural adaptation of a halotolerant dehalogenase, DehHX (GenBank accession number: KR297065) of the halotolerant <i>Pseudomonas halophila</i>, over its non-halotolerant counterpart, DehMX1 (GenBank accession number KY129692) produced by <i>Pseudomonas aeruginosa</i>. GC content of the halotolerant DehHX DNA sequence was distinctively higher (58.9%) than the non-halotolerant dehalogenases (55% average GC). Its acidic residues, Asp and Glu were 8.27% and 12.06%, respectively, compared to an average 5.5% Asp and 7% Glu, in the latter; but lower contents of basic and hydrophobic residues in the DehHX. The secondary structure of DehHX interestingly revealed a lower incidence of α-helix forming regions (29%) and a higher percentage of coils (57%), compared to 49% and 29% in the non-halotolerant homologues, respectively. Simulation models showed the DehHX is stable under a highly saline environment (25% w/v) by adopting a highly negative-charged surface with a concomitant weakly interacting hydrophobic core. The study thus, established that a halotolerant dehalogenase undergoes notable evolutionary structural changes related to GC content over its non-halotolerant counterpart, in order to adapt and thrive under highly saline environments. Communicated by Ramaswamy H. Sarma
提供机构:
Taylor & Francis
创建时间:
2019-09-09
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