Unidad de Biotecnología, Centro de Investigación Científica de Yucatán, Calle 43, No. 130, Col. Chuburná de Hidalgo, 97200 Mérida, Yucatán, Mexico.
Curr Microbiol. 2012 May;64(5):477-85. doi: 10.1007/s00284-012-0095-6. Epub 2012 Feb 23.
Glycerol-3-phosphate dehydrogenase (GPDH) catalyzes the conversion of dihydroxyacetone phosphate (DHAP) and NADH to glycerol-3-phosphate (G3P) and NAD(+). G3P is important as a precursor for glycerol and glycerolipid synthesis in microalgae. A GPDH enzyme has been previously purified from the green microalga Chlamydomonas reinhardtii, however, no genes coding for GPDH have been characterized before. In this study, we report the in silico characterization of three putative GPDH genes from C. reinhardtii: CrGPDH1, CrGPDH2, and CrGPDH3. These sequences showed a significant similarity to characterized GPDH genes from the microalgae Dunaliella salina and Dunaliella viridis. The prediction of the three-dimensional structure of the proteins showed the characteristic fold topology of GPDH enzymes. Furthermore, the phylogenetic analysis showed that the three CrGPDHs share the same clade with characterized GPDHs from Dunaliella suggesting a common evolutionary origin and a similar catalytic function. In addition, the K(a)/K(s) ratios of these sequences suggested that they are under purifying selection. Moreover, the expression analysis showed a constitutive expression of CrGPDH1, while CrGPDH2 and CrGPDH3 were induced in response to osmotic stress, suggesting a possible role for these two sequences in the synthesis of glycerol as a compatible solute in osmoregulation, and perhaps also in lipid synthesis in C. reinhardtii. This study has provided a foundation for further biochemical and genetic studies of the GPDH family in this model microalga, and also opportunities to assess the potential of these genes to enhance the synthesis of TAGs for biodiesel production.
甘油-3-磷酸脱氢酶(GPDH)催化二羟丙酮磷酸(DHAP)和 NADH 转化为甘油-3-磷酸(G3P)和 NAD(+)。G3P 作为微藻中甘油和甘油脂合成的前体很重要。以前已经从绿藻莱茵衣藻中纯化出 GPDH 酶,但之前尚未鉴定出编码 GPDH 的基因。在这项研究中,我们报告了来自莱茵衣藻的三个假定 GPDH 基因的计算机分析:CrGPDH1、CrGPDH2 和 CrGPDH3。这些序列与微藻盐生杜氏藻和杜氏盐藻的特征 GPDH 基因具有显著的相似性。蛋白质三维结构的预测显示了 GPDH 酶的特征折叠拓扑结构。此外,系统发育分析表明,这三个 CrGPDHs 与盐生杜氏藻的特征 GPDHs 属于同一进化枝,表明它们具有共同的进化起源和相似的催化功能。此外,这些序列的 K(a)/K(s) 比值表明它们受到纯化选择。此外,表达分析显示 CrGPDH1 持续表达,而 CrGPDH2 和 CrGPDH3 则响应渗透胁迫诱导表达,表明这两个序列可能在甘油作为渗透调节剂中的合成中发挥作用,并且可能在微藻莱茵衣藻的脂质合成中也发挥作用。这项研究为进一步研究该模式微藻的 GPDH 家族的生化和遗传特性奠定了基础,也为评估这些基因增强生物柴油生产中 TAG 合成的潜力提供了机会。