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Keywords = chaperedoxin

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2 pages, 175 KiB  
Correction
Correction: Muñoz-Villagrán et al. The Thioredoxin Fold Protein (TFP2) from Extreme Acidophilic Leptospirillum sp. CF-1 Is a Chaperedoxin-like Protein That Prevents the Aggregation of Proteins under Oxidative Stress. Int. J. Mol. Sci. 2024, 25, 6905
by Claudia Muñoz-Villagrán, Javiera Acevedo-Arbunic, Elisabeth Härtig, Susanne Sievers, Daniela Zühlke, Francisco Issotta, Carolina Mascayano, Dieter Jahn, Martina Jahn and Gloria Levicán
Int. J. Mol. Sci. 2024, 25(23), 12489; https://doi.org/10.3390/ijms252312489 - 21 Nov 2024
Cited by 2 | Viewed by 676
Abstract
Susanne Sievers and Daniela Zühlke were not included as authors in the original publication [...] Full article
(This article belongs to the Special Issue Protein Unfolding Induced by Chemical Agents)
19 pages, 2557 KiB  
Article
The Thioredoxin Fold Protein (TFP2) from Extreme Acidophilic Leptospirillum sp. CF-1 Is a Chaperedoxin-like Protein That Prevents the Aggregation of Proteins under Oxidative Stress
by Claudia Muñoz-Villagrán, Javiera Acevedo-Arbunic, Elisabeth Härtig, Susanne Sievers, Daniela Zühlke, Francisco Issotta, Carolina Mascayano, Dieter Jahn, Martina Jahn and Gloria Levicán
Int. J. Mol. Sci. 2024, 25(13), 6905; https://doi.org/10.3390/ijms25136905 - 24 Jun 2024
Cited by 3 | Viewed by 1313 | Correction
Abstract
Extreme acidophilic bacteria like Leptospirillum sp. require an efficient enzyme system to counteract strong oxygen stress conditions in their natural habitat. The genome of Leptospirillum sp. CF-1 encodes the thioredoxin-fold protein TFP2, which exhibits a high structural similarity to the thioredoxin domain of [...] Read more.
Extreme acidophilic bacteria like Leptospirillum sp. require an efficient enzyme system to counteract strong oxygen stress conditions in their natural habitat. The genome of Leptospirillum sp. CF-1 encodes the thioredoxin-fold protein TFP2, which exhibits a high structural similarity to the thioredoxin domain of E. coli CnoX. CnoX from Escherichia coli is a chaperedoxin that protects protein substrates from oxidative stress conditions using its holdase function and a subsequent transfer to foldase chaperones for refolding. Recombinantly produced and purified Leptospirillum sp. TFP2 possesses both thioredoxin and chaperone holdase activities in vitro. It can be reduced by thioredoxin reductase (TrxR). The tfp2 gene co-locates with genes for the chaperone foldase GroES/EL on the chromosome. The “tfp2 cluster” (ctpA-groES-groEL-hyp-tfp2-recN) was found between 1.9 and 8.8-fold transcriptionally up-regulated in response to 1 mM hydrogen peroxide (H2O2). Leptospirillum sp. tfp2 heterologously expressed in E. coli wild type and cnoX mutant strains lead to an increased tolerance of these E. coli strains to H2O2 and significantly reduced intracellular protein aggregates. Finally, a proteomic analysis of protein aggregates produced in E. coli upon exposition to oxidative stress with 4 mM H2O2, showed that Leptospirillum sp. tfp2 expression caused a significant decrease in the aggregation of 124 proteins belonging to fifteen different metabolic categories. These included several known substrates of DnaK and GroEL/ES. These findings demonstrate that Leptospirillum sp. TFP2 is a chaperedoxin-like protein, acting as a key player in the control of cellular proteostasis under highly oxidative conditions that prevail in extreme acidic environments. Full article
(This article belongs to the Special Issue Protein Unfolding Induced by Chemical Agents)
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