TY - JOUR
T1 - Crystal structure and biochemical characterization of malate dehydrogenase from Metallosphaera sedula
AU - Lee, Donghoon
AU - Hong, Jiyeon
AU - Kim, Kyung Jin
N1 - Publisher Copyright:
© 2019 Elsevier Inc.
PY - 2019/2/12
Y1 - 2019/2/12
N2 - Metallosphaera sedula is a thermoacidophilic autotrophic archaeon and known to utilize the 3-hydroxypropionate/4-hydroxybutyrate cycle (3-HP/4-HB cycle) as a carbon fixation pathway. The 3-HP/4-HB cycle in M. sedula is associated with central metabolism, and malate dehydrogenase (MDH) is an enzyme involved in the central metabolism that converts malate to oxaloacetate. To elucidate the enzymatic properties of MDH from M. sedula (MsMDH), we determined the crystal structure of MsMDH as a complex with NAD+ and a ternary complex with malate and NAD+. Based on its complex structures and biochemical experiments, we observed that MsMDH can utilize both NAD+ and NADP+ as a cofactor. In addition, we revealed that MsMDH shows a conformational change at the active site upon substrate binding. Based on the comparison with other MDHs, we revealed that MsMDH was distinguished from general MDHs due to a Lys80 residue, and this difference is likely to influence the unique cofactor specificity of MsMDH.
AB - Metallosphaera sedula is a thermoacidophilic autotrophic archaeon and known to utilize the 3-hydroxypropionate/4-hydroxybutyrate cycle (3-HP/4-HB cycle) as a carbon fixation pathway. The 3-HP/4-HB cycle in M. sedula is associated with central metabolism, and malate dehydrogenase (MDH) is an enzyme involved in the central metabolism that converts malate to oxaloacetate. To elucidate the enzymatic properties of MDH from M. sedula (MsMDH), we determined the crystal structure of MsMDH as a complex with NAD+ and a ternary complex with malate and NAD+. Based on its complex structures and biochemical experiments, we observed that MsMDH can utilize both NAD+ and NADP+ as a cofactor. In addition, we revealed that MsMDH shows a conformational change at the active site upon substrate binding. Based on the comparison with other MDHs, we revealed that MsMDH was distinguished from general MDHs due to a Lys80 residue, and this difference is likely to influence the unique cofactor specificity of MsMDH.
KW - Carbon fixation
KW - Malate dehydrogenase
KW - Metallosphaera sedula
KW - Thermoacidophilic archaea
UR - http://www.scopus.com/inward/record.url?scp=85059677099&partnerID=8YFLogxK
U2 - 10.1016/j.bbrc.2019.01.018
DO - 10.1016/j.bbrc.2019.01.018
M3 - Article
C2 - 30638660
AN - SCOPUS:85059677099
SN - 0006-291X
VL - 509
SP - 833
EP - 838
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
IS - 3
ER -