首页> 外文期刊>The Journal of biological chemistry >CTP:2,3-di-O-geranylgeranyl-sn-glycero-1-phosphate Cytidyltransferase in the Methanogenic ArchaeonMethanothermobacter thermoautotrophicus*
【24h】

CTP:2,3-di-O-geranylgeranyl-sn-glycero-1-phosphate Cytidyltransferase in the Methanogenic ArchaeonMethanothermobacter thermoautotrophicus*

机译:产甲烷古生菌中的CTP:2,3-二-O-香叶基香叶基-sn-甘油-1-磷酸胞苷基转移酶

获取原文
       

摘要

CDP-2,3-di-O-geranylgeranyl-sn-glycerol synthase (CDP-archaeol synthase) activity was discovered in the membrane fraction of the methanoarchaeon Methanothermobacter thermoautotrophicus cells. It catalyzed the formation of CDP-2,3-di-O-geranylgeranyl-sn-glycerol from CTP and 2,3-di-O-geranylgeranyl-sn-glycero-1-phosphate (unsaturated archaetidic acid). The identity of the reaction product was confirmed by thin layer chromatography, fast atom bombardment-mass spectroscopy, chemical analysis, and by UV spectroscopy. One mole of the product was formed from approximately 1 mol of each of the reactants. The enzyme showed maximal activity at pH 8.5 and 55 °C in the presence of Mg2+ and K+ ions. By in vivo pulse labeling of phospholipids with32Pi, CDP-archaeol was found to be an intracellular intermediate. A cell-free homogenate of M. thermoautotrophicus, when incubated with l-serine, converted the product of CDP-archaeol synthase reaction to a product with the same chromatographic mobility as archaetidylserine. It was concluded from these results that both CDP-archaeol and CDP-archaeol synthase were involved in cellular phospholipid biosynthesis. Among various synthetic substrate analogs, both enantiomers of unsaturated archaetidic acid possessing geranylgeranyl chains showed similar levels of activity, while archaetidic acid with saturated or monounsaturated isoprenoid or straight chains was a poor substrate, despite having the same stereostructure as the fully active substrate. The ester analogs with geranylgeranioyl chains showed significant activities. These results suggest that the enzyme dose not recognize ether or ester bonds between glycerophosphate and hydrocarbon chains nor the stereostructure of the glycerophosphate backbone but mainly targets substrates with geranylgeranyl chains.
机译:在甲基古细菌甲烷甲烷嗜热菌自养自养细胞的膜部分发现了CDP-2,3-二-O-香叶基香叶基-sn-甘油合酶(CDP-古细菌合酶)的活性。它催化了由CTP和2,3-二-O-香叶基香叶基-sn-甘油-1-磷酸(不饱和古草酸)形成CDP-2,3-二-O-香叶基香叶基-sn-甘油。反应产物的身份通过薄层色谱法,快速原子轰击质谱法,化学分析法和紫外光谱法确认。由约1摩尔的每种反应物形成一摩尔的产物。在存在Mg2 +和K +离子的情况下,该酶在pH 8.5和55°C下显示出最大活性。通过体内用32 Pi对磷脂进行脉冲标记,发现CDP-archaeol是一种细胞内中间体。当与l-丝氨酸一起孵育时,无自生嗜热毁丝霉的无细胞匀浆将CDP-archaeol合酶反应的产物转化为具有与古乙酰丝氨酸相同的色谱迁移率的产物。从这些结果可以得出结论,CDP-archaeol和CDP-archaeol合酶均参与细胞磷脂的生物合成。在各种合成的底物类似物中,具有香叶基香叶基链的不饱和古菌酸的两种对映异构体均表现出相似的活性水平,而具有饱和或单不饱和类异戊二烯或直链的古草酸是较差的底物,尽管其立体结构与完全活性的底物相同。具有香叶基香叶酰基链的酯类似物显示出显着的活性。这些结果表明该酶不识别甘油磷酸酯和烃链之间的醚或酯键,也不识别甘油磷酸酯主链的立体结构,而是主要靶向具有香叶基香叶基链的底物。

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