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悬浮培养的大鼠肝癌细胞中的胆碱代谢与膜形成。II. 生长周期中的磷脂酰胆碱合成及线粒体密度的波动

Choline metabolism and membrane formation in rat hepatoma cells grown in suspension culture. II. Phosphatidylcholine synthesis during growth cycle and fluctuation of mitochondrial density.

作者信息

Plagemann P G

出版信息

J Cell Biol. 1969 Sep;42(3):766-81. doi: 10.1083/jcb.42.3.766.

Abstract

The incorporation of methyl-labeled choline into phosphorylcholine and phosphatidylcholine of cellular membranes by Novikoff rat hepatoma cells (line N1S1-67) during growth in suspension culture was investigated. Upon initiation of a fresh culture at 10(5) cells/ml, the rate of synthesis of phosphorylcholine by the cells was four to five times greater than that of the synthesis of phosphatidylcholine. While the rate of synthesis of the latter remained relatively constant, the rate of phosphorylation of choline decreased progressively during the course of the growth cycle of the culture to 10-20% of the initial rate when the culture reached stationary phase at 3 x 10(6) cells/ml. The decrease in phosphorylcholine synthesis during the growth cycle was not due to depletion of choline in the medium or a decrease in its concentration, but was correlated with a decrease in choline kinase activity of the cells as measured in cell-free extracts. Newly synthesized phosphatidylcholine was detectable in cells only as an integral part of cellular membranes. Its distribution among various cytoplasmic membrane structures separated by isopycnic centrifugation in sucrose density gradients remained relatively constant during the growth cycle. About 50% was associated with the mitochondria, and the remainder with plasma membrane fragments and other membranous structures with mean densities of about 1.15 and 1.13 g/cm(3), respectively. However, the density of the mitochondria increased from about 1.167 g/cm(3) in early exponential phase cells to about 1.190 g/cm(3) in stationary phase cells. The finding that the density of the entire propulation of mitochondria changed simultaneously and progressively is in agreement with the view that mitochondria grow by addition of phospholipids and structural proteins and increase in number by division.

摘要

研究了诺维科夫大鼠肝癌细胞(N1S1 - 67系)在悬浮培养生长过程中,将甲基标记的胆碱掺入细胞膜的磷酸胆碱和磷脂酰胆碱的情况。以10⁵个细胞/毫升开始新鲜培养时,细胞合成磷酸胆碱的速率比合成磷脂酰胆碱的速率大四到五倍。虽然后者的合成速率保持相对恒定,但在培养的生长周期过程中,胆碱的磷酸化速率逐渐下降,当培养物达到3×10⁶个细胞/毫升的稳定期时,降至初始速率的10 - 20%。生长周期中磷酸胆碱合成的下降不是由于培养基中胆碱的耗尽或其浓度的降低,而是与在无细胞提取物中测得的细胞胆碱激酶活性的降低相关。新合成的磷脂酰胆碱仅作为细胞膜的一个组成部分在细胞中被检测到。在生长周期中,其在蔗糖密度梯度等密度离心中分离的各种细胞质膜结构中的分布保持相对恒定。约50%与线粒体相关,其余与质膜碎片和其他平均密度分别约为1.15和1.13克/立方厘米的膜结构相关。然而,线粒体的密度从指数生长期早期细胞中的约1.167克/立方厘米增加到稳定期细胞中的约1.190克/立方厘米。整个线粒体群体的密度同时且逐渐变化这一发现与线粒体通过添加磷脂和结构蛋白生长并通过分裂增加数量的观点一致。

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