Cooper R A, Ip S H, Cassileth P A, Kuo A L
Cancer Res. 1981 May;41(5):1847-52.
Myeloid differentiation is induced in HL-60 promyelocytic leukemia cells by dimethyl sulfoxide, retinoic acid, hypoxanthine, and a number of other chemical agents. We questioned whether the induction process was associated with changes in lipid synthesis. With [14C]acetate, a precursor for all cell lipids, a decrease in sterol and phospholipid synthesis (but not triglyceride synthesis) was observed within the first 5 hr after exposure to inducer, a time prior to inhibition of DNA synthesis or cessation of cell growth. Similarly, the membrane fraction of HL-60 cells exhibited decreased incorporation of newly synthesized lipid. Synthesis of phosphatidylcholine from choline as well as from the transmethylation of membrane phosphatidylethanolamine was also inhibited by myeloid inducers. In contrast, neither sterol nor phospholipid degradation was stimulated under these conditions. Both cholesterol and lanosterol were synthesized by growing HL-60 cells, but cholesterol esters were not. Synthesis of sterols was subject to feedback inhibition by cholesterol in the medium, but such feedback inhibition did not affect differentiation in the presence of myeloid inducers and did not alter the effect of myeloid inducers on phospholipid synthesis. Removal of dimethyl sulfoxide at 16 hr permitted a return to normal lipid synthesis and prevented differentiation, whereas removal of dimethyl sulfoxide at 40 hr was followed by continued inhibition of lipid synthesis and progressive differentiation. These studies demonstrate that the induction of myeloid differentiation is associated with an early inhibition of the synthesis of those lipids which are normally a part of cell membranes.
二甲基亚砜、视黄酸、次黄嘌呤及其他一些化学试剂可诱导HL - 60早幼粒细胞白血病细胞发生髓系分化。我们曾质疑诱导过程是否与脂质合成的变化有关。用[14C]乙酸盐(所有细胞脂质的前体)处理后,在暴露于诱导剂后的最初5小时内,观察到固醇和磷脂合成减少(但甘油三酯合成未减少),此时DNA合成尚未受抑制,细胞生长也未停止。同样,HL - 60细胞的膜部分显示新合成脂质的掺入减少。髓系诱导剂也抑制了由胆碱合成磷脂酰胆碱以及膜磷脂酰乙醇胺的甲基化过程。相比之下,在这些条件下,固醇和磷脂的降解均未受到刺激。生长中的HL - 60细胞可合成胆固醇和羊毛甾醇,但不合成胆固醇酯。培养基中的胆固醇对固醇合成有反馈抑制作用,但在存在髓系诱导剂的情况下,这种反馈抑制并不影响分化,也不会改变髓系诱导剂对磷脂合成的作用。在16小时去除二甲基亚砜可使脂质合成恢复正常并阻止分化,而在40小时去除二甲基亚砜后,脂质合成持续受到抑制且细胞逐渐分化。这些研究表明,髓系分化的诱导与早期抑制那些通常作为细胞膜一部分的脂质的合成有关。