Mamroud-Kidron E, Omer-Itsicovich M, Bercovich Z, Tobias K E, Rom E, Kahana C
Department of Molecular Genetics and Virology, Weizmann Institute of Science, Rehovot, Israel.
Eur J Biochem. 1994 Dec 1;226(2):547-54. doi: 10.1111/j.1432-1033.1994.tb20079.x.
Recent studies have provided convincing evidence to add to a number of earlier observations suggesting that the rapid intracellular degradation of mammalian ornithine decarboxylase (ODC) is further accelerated by the action of ornithine decarboxylase antizyme (ODC-Az), a polyamine-induced protein. However, the mechanism whereby ODC-Az exerts its effect in this proteolytic process is mostly unknown. Here, by using reticulocyte-lysate-based synthesis and degradation systems, we demonstrate that interaction of ODC-Az with ODC results in two related outcomes: (a) ODC is inactivated as a result of its monomerization, and (b) ODC degradation is dramatically accelerated. While ODC inactivation requires the integrity of the ODC-Az binding site of ODC and the ODC binding site of ODC-Az, acceleration in ODC degradation also requires the previously characterized carboxyl-terminal destabilizing segment of ODC and a specific segment of ODC-Az that may be functionally distinct from that required for ODC binding. Interestingly, an active ODC variant with a mutant ODC-Az binding site is stable under basal degradation conditions. This, together with the ability of anti-(ODC-Az) antibody to specifically inhibit the basal degradation of ODC in the lysate, suggests that ODC-Az is an essential general mediator of ODC degradation. Based on these observations, we propose a model for the degradation of ODC which always require interaction with antizyme.
最近的研究提供了令人信服的证据,进一步证实了一些早期观察结果,这些结果表明,鸟氨酸脱羧酶抗酶(ODC-Az,一种多胺诱导蛋白)的作用会进一步加速哺乳动物鸟氨酸脱羧酶(ODC)在细胞内的快速降解。然而,ODC-Az在这一蛋白水解过程中发挥作用的机制大多仍不清楚。在这里,通过使用基于网织红细胞裂解物的合成和降解系统,我们证明ODC-Az与ODC的相互作用产生了两个相关结果:(a)ODC因单体化而失活,(b)ODC降解显著加速。虽然ODC失活需要ODC的ODC-Az结合位点和ODC-Az的ODC结合位点完整,但ODC降解的加速还需要ODC先前已确定的羧基末端不稳定片段以及ODC-Az的一个特定片段,该片段在功能上可能与ODC结合所需的片段不同。有趣的是,具有突变ODC-Az结合位点的活性ODC变体在基础降解条件下是稳定的。这一点,再加上抗(ODC-Az)抗体能够特异性抑制裂解物中ODC的基础降解,表明ODC-Az是ODC降解的一种必需的通用介质。基于这些观察结果,我们提出了一个ODC降解模型,该模型总是需要与抗酶相互作用。