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小鼠乳腺向泌乳期过渡过程中线粒体的发育变化。

Developmental changes in mitochondria during the transition into lactation in the mouse mammary gland.

作者信息

Rosano T G, Jones D H

出版信息

J Cell Biol. 1976 Jun;69(3):573-80. doi: 10.1083/jcb.69.3.573.

Abstract

Mitochondrial biogenesis in the parenchymal cell of the mouse mammary gland appears to occur in two distinct phases: replication during cell proliferation, and maturation during cell differentiation. This study of the mitochondrial maturation phase in the mouse gland demonstrates a significant increase in organelle density on isopycnic sucrose gradient centrifugation during the transition from late pregnancy to day 8 of lactation. Differential fragility to high sucrose concentrations or changes in mitochondrial lipid composition do not satisfactorily explain the density increases. When organelle densities were assessed by centrifugation under iso-osmotic conditions with Ficoll gradients in 0.25 M sucrose, the mitochondria from pregnant glands were observed to be more dense than those from lactating glands. The two mitochondrial populations were also found to differ in their response to changes in sucrose concentration in the Ficoll gradients. When sucrose concentration was increased, the density of both pregnant and lactating gland mitochondria increased nonlinearly, the increase being greater with the lactating gland organelles. By use of mathematical models, the differing response was interpreted as a change in the density and osmotic activity of the mitochondrial internal compartment (inner membrane plus matrix space). We have proposed that the changes reflect a large expansion of the inner mitochondrial membrane and perhaps the matrix material during the transition into lactation in the differentiating parenchymal cell.

摘要

小鼠乳腺实质细胞中的线粒体生物发生似乎发生在两个不同阶段

细胞增殖期间的复制,以及细胞分化期间的成熟。对小鼠乳腺线粒体成熟阶段的这项研究表明,从妊娠后期到泌乳第8天的转变过程中,等密度蔗糖梯度离心时细胞器密度显著增加。对高蔗糖浓度的不同脆弱性或线粒体脂质组成的变化并不能令人满意地解释密度增加的原因。当在0.25 M蔗糖中用Ficoll梯度在等渗条件下通过离心评估细胞器密度时,观察到妊娠腺体的线粒体比泌乳腺体的线粒体密度更高。还发现这两种线粒体群体对Ficoll梯度中蔗糖浓度变化的反应不同。当蔗糖浓度增加时,妊娠和泌乳腺体线粒体的密度均呈非线性增加,泌乳腺体细胞器的增加幅度更大。通过使用数学模型,这种不同的反应被解释为线粒体内腔(内膜加基质空间)密度和渗透活性的变化。我们提出,这些变化反映了在分化的实质细胞向泌乳转变过程中线粒体内膜以及可能还有基质物质的大量扩张。

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