College of Life Sciences, Zhongkai University of Agriculture and Engineering, Guangzhou, China.
PLoS One. 2013 Apr 23;8(4):e62287. doi: 10.1371/journal.pone.0062287. Print 2013.
Glycerol is an important osmotically compatible solute in Dunaliella. Glycerol-3-phosphate dehydrogenase (G3PDH) is a key enzyme in the pathway of glycerol synthesis, which converts dihydroxyacetone phosphate (DHAP) to glycerol-3-phosphate. Generally, the glycerol-DHAP cycle pathway, which is driven by G3PDH, is considered as the rate-limiting enzyme to regulate the glycerol level under osmotic shocks. Considering the peculiarity in osmoregulation, the cDNA of a NAD(+)-dependent G3PDH was isolated from D. salina using RACE and RT-PCR approaches in this study. Results indicated that the length of the cDNA sequence of G3PDH was 2,100 bp encoding a 699 amino acid deduced polypeptide whose computational molecular weight was 76.6 kDa. Conserved domain analysis revealed that the G3PDH protein has two independent functional domains, SerB and G3PDH domains. It was predicted that the G3PDH was a nonsecretory protein and may be located in the chloroplast of D. salina. Phylogenetic analysis demonstrated that the D. salina G3PDH had a closer relationship with the G3PDHs from the Dunaliella genus than with those from other species. In addition, the cDNA was subsequently subcloned in the pET-32a(+) vector and was transformed into E. coli strain BL21 (DE3), a expression protein with 100 kDa was identified, which was consistent with the theoretical value.
甘油是盐生杜氏藻中的一种重要的渗透相容性溶质。甘油-3-磷酸脱氢酶(G3PDH)是甘油合成途径中的关键酶,可将二羟丙酮磷酸(DHAP)转化为甘油-3-磷酸。通常,甘油-DHAP 循环途径,由 G3PDH 驱动,被认为是调节渗透冲击下甘油水平的限速酶。考虑到渗透调节的特殊性,本研究采用 RACE 和 RT-PCR 方法从盐生杜氏藻中分离出 NAD(+)-依赖性 G3PDH 的 cDNA。结果表明,G3PDH 的 cDNA 序列长度为 2100bp,编码一个 699 个氨基酸的推断多肽,其计算分子量为 76.6kDa。保守结构域分析表明,G3PDH 蛋白具有两个独立的功能结构域,SerB 和 G3PDH 结构域。预测 G3PDH 是一种非分泌蛋白,可能位于盐生杜氏藻的叶绿体中。系统发育分析表明,盐生杜氏藻 G3PDH 与杜氏藻属的 G3PDHs 关系较近,而与其他物种的 G3PDHs 关系较远。此外,该 cDNA 随后被亚克隆到 pET-32a(+)载体中,并转化到 E. coli 菌株 BL21(DE3)中,鉴定到一个 100kDa 的表达蛋白,与理论值一致。