Hoffman R M
AntiCancer, Incorporated, San Diego, CA 92111, USA.
Hum Cell. 1997 Mar;10(1):69-80.
Methionine metabolism and transmethylation are central to the metabolism and differentiation of all known cells. In enkaryotic organisms, methionine metabolism and transmethylation are of paramount importance in modification and regulation of proteins, lipids, and nucleic acids. The differential methylation of genes regulates their expression in the myriad of cells in eukaryotic organisms. Disruption and abnormalities in methionine metabolism and transmethylation seems to be associated with the major diseases of mankind, including cancer, heart disease, aging, obesity, and Parkinson's disease. In this review, we describe how aberrant and abnormal methionine metabolism and transmethylation are related to these major diseases. Most importantly, we review and hypothesize how the developing therapeutic recombination methioninase (rMETase) can be utilized to cure or prevent all of these diseases.
甲硫氨酸代谢和转甲基作用是所有已知细胞代谢和分化的核心。在真核生物中,甲硫氨酸代谢和转甲基作用在蛋白质、脂质和核酸的修饰与调节中至关重要。基因的差异甲基化调节其在真核生物众多细胞中的表达。甲硫氨酸代谢和转甲基作用的紊乱与异常似乎与人类的主要疾病相关,包括癌症、心脏病、衰老、肥胖症和帕金森病。在本综述中,我们描述了异常的甲硫氨酸代谢和转甲基作用如何与这些主要疾病相关。最重要的是,我们回顾并假设如何利用正在研发的治疗性重组甲硫氨酸酶(rMETase)来治愈或预防所有这些疾病。