Wang Limin, Magdaleno Susan, Tabas Ira, Jackowski Suzanne
Department of Infectious Diseases, St. Jude Children's Research Hospital, 332 N. Lauderdale, Memphis, TN 38105-2794, USA.
Mol Cell Biol. 2005 Apr;25(8):3357-63. doi: 10.1128/MCB.25.8.3357-3363.2005.
phosphocholine cytidylyltransferase (CCT) catalyzes a rate-controlling step in the biosynthesis of phosphatidylcholine (PtdCho). Multiple CCT isoforms, CCTalpha, CCTbeta2, and CCTbeta3, are encoded by two genes, Pcyt1a and Pcyt1b. The importance of CCTalpha in mice was investigated by deleting exons 5 and 6 in the Pcyt1a gene using the Cre-lox system. Pcyt1a-/- zygotes failed to form blastocysts, did not develop past embryonic day 3.5 (E3.5), and failed to implant. In situ hybridization in E11.5 embryos showed that Pcyt1a is expressed ubiquitously, with the highest level in fetal liver, and CCTalpha transcripts are significantly more abundant than transcripts encoding CCTbeta or phosphatidylethanolamine (PtdEtn) N-methyl transferase, two other enzymes capable of producing PtdCho. Reduction of the CCTalpha transcripts in heterozygous E11.5 embryos was accompanied by upregulation of CCTbeta and PtdEtn N-methyltransferase transcripts. In contrast, enzymatic and real-time PCR data revealed that CCTbeta (Pcyt1b) expression is not upregulated to compensate for the reduction in CCTalpha expression in adult liver and other tissues from Pcyt1a+/- heterozygous mice. PtdCho biosynthesis measured by choline incorporation into isolated hepatocytes was not compromised in the Pcyt1a+/- mice. Liver PtdCho mass was the same in Pcyt1a+/+ and Pcyt1a+/- adult animals, but lung PtdCho mass decreased in the heterozygous mice. These data show that CCTalpha expression is required for early embryonic development, but that a 50% reduction in enzyme activity has little detectable impact on the operation of the CDP-choline metabolic pathway in adult tissues.
磷酸胆碱胞苷转移酶(CCT)催化磷脂酰胆碱(PtdCho)生物合成中的一个速率控制步骤。多个CCT亚型,即CCTα、CCTβ2和CCTβ3,由两个基因Pcyt1a和Pcyt1b编码。利用Cre-lox系统删除Pcyt1a基因的外显子5和6,研究了CCTα在小鼠中的重要性。Pcyt1a-/-合子未能形成囊胚,在胚胎第3.5天(E3.5)后无法发育,也未能着床。对E11.5胚胎进行原位杂交显示,Pcyt1a在全身广泛表达,在胎肝中表达水平最高,且CCTα转录本比编码CCTβ或磷脂酰乙醇胺(PtdEtn)N-甲基转移酶(另外两种能够产生PtdCho的酶)的转录本明显丰富得多。杂合的E11.5胚胎中CCTα转录本的减少伴随着CCTβ和PtdEtn N-甲基转移酶转录本的上调。相比之下,酶活性测定和实时PCR数据显示,在Pcyt1a+/-杂合小鼠的成年肝脏和其他组织中,CCTβ(Pcyt1b)的表达并未上调以补偿CCTα表达的降低。通过胆碱掺入分离的肝细胞来测量的PtdCho生物合成在Pcyt1a+/-小鼠中并未受到影响。Pcyt1a+/+和Pcyt1a+/-成年动物的肝脏PtdCho含量相同,但杂合小鼠肺中的PtdCho含量降低。这些数据表明,CCTα的表达是早期胚胎发育所必需的,但酶活性降低50%对成年组织中CDP-胆碱代谢途径的运作几乎没有可检测到的影响。