Bulawa C E, Hermes J D, Raetz C R
J Biol Chem. 1983 Dec 25;258(24):14974-80.
CDP-diglyceride, the precursor of all the phospholipids in Escherichia coli, is cleaved in vitro to phosphatidic acid and CMP by a membrane-bound hydrolase. Since the physiological function of CDP-diglyceride hydrolase is unknown, we have explored the possibility that this enzyme acts in vivo as either a phosphatidyl- or cytidylyltransferase. To distinguish between these two alternatives, partially purified hydrolase was incubated with CDP-diglyceride in the presence of 50% H218O. Analysis of the reaction products by 31P NMR showed that 18O is incorporated exclusively into CMP, suggesting that the enzyme is a cytidylyltransferase. This conclusion is further supported by the following experimental results: (i) the hydrolase catalyzes the transfer of CMP from CDP-diglyceride to Pi; (ii) numerous phosphomonoesters, such as glycerol 3-phosphate, phosphoserine, and glucose 1-phosphate also function as CMP acceptors, but the corresponding compounds lacking the phosphate residues are not substrates for the enzyme; and (iii) CDP-diglyceride hydrolase exchanges [32P]phosphatidic acid for the phosphatidyl moiety of CDP-diglyceride and 32Pi for the beta-phosphate residue of CDP, indicating the involvement of a novel CMP-enzyme complex. These data suggest a biosynthetic role for CDP-diglyceride hydrolase, and extend the possible functions of CDP-diglyceride in the E. coli envelope.
CDP - 二甘油酯是大肠杆菌中所有磷脂的前体,在体外可被一种膜结合水解酶裂解为磷脂酸和CMP。由于CDP - 二甘油酯水解酶的生理功能尚不清楚,我们探讨了该酶在体内作为磷脂酰转移酶或胞苷酰转移酶发挥作用的可能性。为了区分这两种可能性,将部分纯化的水解酶与CDP - 二甘油酯在50% H₂¹⁸O存在下孵育。通过³¹P NMR对反应产物进行分析表明,¹⁸O仅掺入CMP中,这表明该酶是一种胞苷酰转移酶。以下实验结果进一步支持了这一结论:(i)水解酶催化CMP从CDP - 二甘油酯转移到Pi;(ii)许多磷酸单酯,如甘油3 - 磷酸、磷酸丝氨酸和葡萄糖1 - 磷酸也可作为CMP受体,但缺乏磷酸残基的相应化合物不是该酶的底物;(iii)CDP - 二甘油酯水解酶可使[³²P]磷脂酸与CDP - 二甘油酯的磷脂酰部分交换,³²Pi与CDP的β - 磷酸残基交换,这表明存在一种新型的CMP - 酶复合物。这些数据表明CDP - 二甘油酯水解酶具有生物合成作用,并扩展了CDP - 二甘油酯在大肠杆菌包膜中的可能功能。