glyoxalase iii
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Antioxidants ◽  
2021 ◽  
Vol 10 (5) ◽  
pp. 648
Author(s):  
Brijesh Kumar ◽  
Charanpreet Kaur ◽  
Ashwani Pareek ◽  
Sudhir K. Sopory ◽  
Sneh L. Singla-Pareek

Glyoxalase pathway is the primary route for metabolism of methylglyoxal (MG), a toxic ubiquitous metabolite that affects redox homeostasis. It neutralizes MG using Glyoxalase I and Glyoxalase II (GLYI and GLYII) enzymes in the presence of reduced glutathione. In addition, there also exists a shorter route for the MG detoxification in the form of Glyoxalase III (GLYIII) enzymes, which can convert MG into D-lactate in a single-step without involving glutathione. GLYIII proteins in different systems demonstrate diverse functional capacities and play a vital role in oxidative stress response. To gain insight into their evolutionary patterns, here we studied the evolution of GLYIII enzymes across prokaryotes and eukaryotes, with special emphasis on plants. GLYIII proteins are characterized by the presence of DJ-1_PfpI domains thereby, belonging to the DJ-1_PfpI protein superfamily. Our analysis delineated evolution of double DJ-1_PfpI domains in plant GLYIII. Based on sequence and structural characteristics, plant GLYIII enzymes could be categorized into three different clusters, which followed different evolutionary trajectories. Importantly, GLYIII proteins from monocots and dicots group separately in each cluster and the each of the two domains of these proteins also cluster differentially. Overall, our findings suggested that GLYIII proteins have undergone significant evolutionary changes in plants, which is likely to confer diversity and flexibility in their functions.



Author(s):  
Manoj Vadakkenchery Mohanan ◽  
Anunanthini Pushpanathan ◽  
Sarath Padmanabhan ◽  
Thelakat Sasikumar ◽  
Ashwin Narayan Jayanarayanan ◽  
...  




2020 ◽  
Vol 39 (11) ◽  
pp. 1581-1594
Author(s):  
Manoj Vadakkenchery Mohanan ◽  
Anunanthini Pushpanathan ◽  
Sarath Padmanabhan Thelakat Sasikumar ◽  
Dharshini Selvarajan ◽  
Ashwin Narayan Jayanarayanan ◽  
...  




2017 ◽  
Vol 37 (6) ◽  
Author(s):  
Hyo Jung Kim ◽  
Ki-Young Lee ◽  
Ae-Ran Kwon ◽  
Bong-Jin Lee

The DJ-1/ThiJ/PfpI superfamily of proteins is highly conserved across all biological kingdoms showing divergent multifunctions, such as chaperone, catalase, protease, and kinase. The common theme of these functions is responding to and managing various cellular stresses. DJ-1/ThiJ/PfpI superfamily members are classified into three subfamilies according to their quaternary structure (DJ-1-, YhbO-, and Hsp-types). The Hsp-type subfamily includes Hsp31, a chaperone and glyoxalase III. SAV0551, an Hsp-type subfamily member from Staphylococcus aureus, is a hypothetical protein that is predicted as Hsp31. Thus, to reveal the function and reaction mechanism of SAV0551, the crystal structure of SAV0551 was determined. The overall folds in SAV0551 are similar to other members of the Hsp-type subfamily. We have shown that SAV0551 functions as a chaperone and that the surface structure is crucial for holding unfolded substrates. As many DJ-1/ThiJ/PfpI superfamily proteins have been characterized as glyoxalase III, our study also demonstrates SAV0551 as a glyoxalase III that is independent of any cofactors. The reaction mechanism was evaluated via a glyoxylate-bound structure that mimics the hemithioacetal reaction intermediate. We have confirmed that the components required for reaction are present in the structure, including a catalytic triad for a catalytic action, His78 as a base, and a water molecule for hydrolysis. Our functional studies based on the crystal structures of native and glyoxylate-bound SAV0551 will provide a better understanding of the reaction mechanism of a chaperone and glyoxalase III.



2016 ◽  
Vol 6 (1) ◽  
Author(s):  
Ajit Ghosh ◽  
Hemant R Kushwaha ◽  
Mohammad R Hasan ◽  
Ashwani Pareek ◽  
Sudhir K Sopory ◽  
...  
Keyword(s):  


2014 ◽  
Vol 14 (1) ◽  
pp. 86 ◽  
Author(s):  
Qiaoqiao Zhao ◽  
Yang Su ◽  
Zhikang Wang ◽  
Caiping Chen ◽  
Tongsiyu Wu ◽  
...  


2011 ◽  
Vol 81 (4) ◽  
pp. 926-936 ◽  
Author(s):  
Krishna P. Subedi ◽  
Dongwook Choi ◽  
Insook Kim ◽  
Bumchan Min ◽  
Chankyu Park
Keyword(s):  
K 12 ◽  


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