McDonough A A, Tang M J, Lescale-Matys L
Department of Physiology and Biophysics, University of Southern California School of Medicine, Los Angeles 90033.
Semin Nephrol. 1990 Jul;10(4):400-9.
In this review we have summarized the work of ourselves and others on ionic and hormonal regulation of synthesis of the sodium pump. No one central theme emerges from this summary. Rather, it appears that abundance can be regulated pre-translationally or posttranslationally. As reviewed recently, regulation of the expression of the beta glycoprotein subunit, which has no described enzymatic function, can regulate holoenzyme expression. In the kidney this is exemplified in our studies in LLC-PK1 cells and proximal tubule cells where pre-translational regulation of beta expression is key to increasing holoenzyme abundance, and also exemplified in the hypothyroid renal cortex where regulation of beta protein abundance post-translationally appears to impact the abundance of enzymatically active NaK-ATPase. Future studies in the field of ionic regulation of NaK-ATPase must be directed at elucidating the signals that mediate the response, and at how these signals alter the NaK-ATPase biosynthetic pathway from expression of alpha and beta genes, through to turnover of the mature NaK-ATPase heterodimer.
在本综述中,我们总结了我们自己以及其他人关于钠泵合成的离子和激素调节方面的工作。从这个总结中并未出现一个核心主题。相反,似乎丰度可以在翻译前或翻译后受到调节。正如最近所综述的,β糖蛋白亚基(其没有已描述的酶功能)表达的调节可以调节全酶表达。在肾脏中,这在我们对LLC-PK1细胞和近端小管细胞的研究中得到了例证,其中β表达的翻译前调节是增加全酶丰度的关键,在甲状腺功能减退的肾皮质中也有例证,其中β蛋白丰度的翻译后调节似乎会影响具有酶活性的钠钾ATP酶的丰度。钠钾ATP酶离子调节领域的未来研究必须致力于阐明介导反应的信号,以及这些信号如何改变钠钾ATP酶的生物合成途径,从α和β基因的表达,直至成熟钠钾ATP酶异二聚体的周转。