A novel thermostable and halophilic thioredoxin reductase from the Red Sea Atlantis II hot brine pool

Abdel-Badiea, Elham; Sayed, Ahmed A; Maged, Mohamad; Fouad, Walid M; Said, Mahmoud M; Esmat, Amr Y;

Abstract


The highly extreme conditions of the lower convective layer in the Atlantis II (ATII) Deep brine pool of the Red Sea make it an ideal environment for the search for novel enzymes that can function under extreme conditions. In the current study, we isolated a novel sequence of a thioredoxin reductase (TrxR) enzyme from the metagenomic dataset established from the microbial community that resides in the lower convective layer of Atlantis II. The gene was cloned, expressed and characterized for redox activity, halophilicity, and thermal stability. The isolated thioredoxin reductase (ATII-TrxR) was found to belong to the high-molecular-weight class of thioredoxin reductases. A search for conserved domains revealed the presence of an extra domain (Crp) in the enzyme sequence. Characterization studies of ATII-TrxR revealed that the enzyme was halophilic (maintained activity at 4 M NaCl), thermophilic (optimum temperature was 65°C) and thermostable (60% of its activity was retained at 70°C). Additionally, the enzyme utilized NADH in addition to NADPH as an electron donor. In conclusion, a novel thermostable and halophilic thioredoxin reductase has been isolated with a unique sequence that adapts to the harsh conditions of the brine pools making this protein a good candidate for biological research and industrial applications.


Other data

Title A novel thermostable and halophilic thioredoxin reductase from the Red Sea Atlantis II hot brine pool
Authors Abdel-Badiea, Elham ; Sayed, Ahmed A; Maged, Mohamad; Fouad, Walid M; Said, Mahmoud M; Esmat, Amr Y
Keywords MAMMALIAN THIOREDOXIN; SALT BRIDGES; SYSTEM; IDENTIFICATION; PROTEINS; PURIFICATION; ACID; DIVERSITY; SEQUENCES; ALIGNMENT
Issue Date May-2019
Publisher PUBLIC LIBRARY SCIENCE
Journal PloS one
ISSN 1932-6203
DOI 10.1371/journal.pone.0217565
PubMed ID 31150456
Web of science ID WOS:000469759100067

Recommend this item

Similar Items from Core Recommender Database

Google ScholarTM

Check

Citations 1 in pubmed
Citations 10 in scopus


Items in Ain Shams Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.