...
首页> 外文期刊>Biotechnology & Biotechnological Equipment >In Silico Structural Determination of GPAT Enzyme from Ostreococcus Lucimarinus for Biotechnological Application of Microalgal Biofuel Production
【24h】

In Silico Structural Determination of GPAT Enzyme from Ostreococcus Lucimarinus for Biotechnological Application of Microalgal Biofuel Production

机译:用于微藻生物燃料生产生物技术应用的路氏菌球形葡聚糖GPAT酶的计算机结构测定

获取原文
           

摘要

Glycerol-3-phosphate acyltransferase (GPAT) is an enzyme in the triacylglycerol (TAG) biosynthetic pathway that catalyses the conversion of glycerol-3-phosphate to lysophosphatidic acid. Targeting key enzymes involved in TAG pathway is considered to be a powerful strategy for augmented lipid accumulation in microorganisms. In the present study three-dimensional structure of the marine microalgae, Ostreococcus lucimarinus GPAT protein was developed based on the crystal structure of Cucurbita moschata GPAT protein. Besides, several structure validation tools were employed to confirm the reliability of the developed model. The predicted and validated model reveals the tertiary structure of GPAT monomer comprising of two domains, the smaller domain I, which folds into a four helix bundle, and the larger domain II, which is constructed from alternating ???±/???2 secondary structural elements that give rise to 9-stranded ???2 sheet flanked by 11???± helices. Critical structural analysis of the developed model reveals the presence of H(X) 4 D motif; the latter being, a consensus sequence conserved amongst many glycerolipid acyltransferase. The detected cluster of positively charged residues H 189 , K 243 , H 244 , R 285 and R 287 in the model could be conjectured to be important in glycerol-3-phosphate recognition. The structural insight obtained from this in silico study may provide useful clues to further advanced biotechnological studies of strategic site-specific genetic and metabolic engineering of microalgae for enhanced biofuel production.
机译:甘油3-磷酸酰基转移酶(GPAT)是三酰基甘油(TAG)生物合成途径中的一种酶,催化3-磷酸甘油转化为溶血磷脂酸。靶向参与TAG途径的关键酶被认为是增加微生物中脂质积累的有力策略。在本研究中,海洋微藻的三维结构是基于南瓜(Mocurata moschata)GPAT蛋白的晶体结构开发的,Octrecoccus lucimarinus GPAT蛋白。此外,采用了几种结构验证工具来确认所开发模型的可靠性。预测和验证的模型揭示了GPAT单体的三级结构,该结构由两个结构域组成,较小的结构域I折叠成四个螺旋束,而较大的结构域II由交替的±/π2构成二级结构元件,产生9链2片,两侧是11 +/-螺旋。对已开发模型的关键结构分析揭示了H(X)4 D基序的存在。后者是许多甘油脂酰酰基转移酶中保守的共有序列。该模型中检测到的带正电残基H 189,K 243,H 244,R 285和R 287的簇可以推测对甘油3-磷酸酯的识别很重要。从这项计算机模拟研究中获得的结构洞察力可能为进一步的高级生物技术研究提供有用的线索,这些研究是针对微藻进行战略性针对特定地点的遗传和代谢工程以增强生物燃料生产的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号