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The unusual di-domain structure of Dunaliella salina glycerol-3-phosphate dehydrogenase enables direct conversion of dihydroxyacetone phosphate to glycerol

Plant J. 2019-12-01; 
Qinghua He, Joel Dewei Toh, Rya Ero, Zhu Qiao, Veerendra Kumar, Aida Serra, Jackie Tan, Siu Kwan Sze, Yong-Gui Gao
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PCR Cloning and Subcloning … All rights reserved METHODS Cloning and expression of DsGPDH The nucleotide sequence corresponding to osmoregulated chloroplast D. salina GPDH protein isoform (GenBank accession: AY845323) was synthesized by GenScript (Piscataway, NJ … Get A Quote

摘要

Dunaliella has been extensively studied due to its intriguing adaptation to high salinity. Its di-domain glycerol-3-phosphate dehydrogenase (GPDH) isoform is likely to underlie the rapid production of the osmoprotectant glycerol. Here, we report the structure of the chimeric Dunaliella salina GPDH (DsGPDH) protein featuring a phosphoserine phosphatase-like domain fused to the canonical glycerol-3-phosphate (G3P) dehydrogenase domain. Biochemical assays confirm that DsGPDH can convert dihydroxyacetone phosphate (DHAP) directly to glycerol, whereas a separate phosphatase protein is required for this conversion process in most organisms. The structure of DsGPDH in complex with its substrate DHAP and co-factor nico... More

关键词

Dunaliella, glycerol biosynthesis, glycerol-3-phosphatase, glycerol-3-phosphate dehydrogenase, osmoregulation, salt-resistance