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生化证据表明,细胞质和细胞核中 GAPDH 的整体隔室活性行为不同。

Biochemical evidence that the whole compartment activity behavior of GAPDH differs between the cytoplasm and nucleus.

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Alberta, Canada.

出版信息

PLoS One. 2023 Aug 31;18(8):e0290892. doi: 10.1371/journal.pone.0290892. eCollection 2023.

Abstract

Some metabolic enzymes normally occur in the nucleus and cytoplasm. These compartments differ in molecular composition. Since post-translational modification and interaction with allosteric effectors can tune enzyme activity, it follows that the behavior of an enzyme as a catalyst may differ between the cytoplasm and nucleus. We explored this possibility for the glycolytic enzyme glyceraldehyde 3-phosphate dehydrogenase (GAPDH). Homogenates of pristine nuclei and cytoplasms isolated from Xenopus laevis oocytes were used for whole compartment activity profiling in a near-physiological buffer. Titrations of NAD+ revealed similar whole compartment activity profiles for GAPDH in nuclear and cytoplasmic homogenates. Surprisingly however GAPDH in these compartments did not have the same behavior in assays of the dependence of initial velocity (v0) on G3P concentration. First, the peak v0 for nuclear GAPDH was up to 2.5-fold higher than the peak for cytoplasmic GAPDH. Second, while Michaelis Menten-like behavior was observed in all assays of cytoplasm, the v0 versus [G3P] plots for nuclear GAPDH typically exhibited a non-Michaelis Menten (sigmoidal) profile. Apparent Km and Vmax (G3P) values for nuclear GAPDH activity were highly variable, even between replicates of the same sample. Possible sources of this variability include in vitro processing of a metabolite that allosterically regulates GAPDH, turnover of a post-translational modification of the enzyme, and fluctuation of the state of interaction of GAPDH with other proteins. Collectively these findings are consistent with the hypothesis that the environment of the nucleus is distinct from the environment of the cytoplasm with regard to GAPDH activity and its modulation. This finding warrants further comparison of the regulation of nuclear and cytoplasmic GAPDH, as well as whole compartment activity profiling of other enzymes of metabolism with cytosolic and nuclear pools.

摘要

一些代谢酶通常存在于细胞核和细胞质中。这些隔室在分子组成上有所不同。由于翻译后修饰和与变构效应物的相互作用可以调节酶活性,因此酶作为催化剂的行为在细胞质和细胞核之间可能有所不同。我们探讨了糖酵解酶甘油醛-3-磷酸脱氢酶(GAPDH)的这种可能性。从非洲爪蟾卵母细胞中分离出的原始核和细胞质的匀浆用于在近生理缓冲液中进行整个隔室活性分析。NAD+滴定显示核和细胞质匀浆中 GAPDH 的整个隔室活性谱相似。然而,令人惊讶的是,这些隔室中的 GAPDH 在测定初始速度(v0)对 G3P 浓度的依赖性时,行为并不相同。首先,核 GAPDH 的峰值 v0 比细胞质 GAPDH 的峰值高 2.5 倍。其次,虽然在所有细胞质测定中都观察到米氏动力学样行为,但核 GAPDH 的 v0 与 [G3P] 图谱通常表现出非米氏动力学(S 型)曲线。核 GAPDH 活性的表观 Km 和 Vmax(G3P)值变化很大,即使在同一样本的重复实验之间也是如此。这种可变性的可能来源包括代谢物的体外加工,酶的翻译后修饰的周转率以及 GAPDH 与其他蛋白质相互作用状态的波动。总的来说,这些发现与这样的假设一致,即核环境与细胞质环境在 GAPDH 活性及其调节方面存在差异。这一发现需要进一步比较核和细胞质 GAPDH 的调节,以及其他具有细胞质和核池的代谢酶的整个隔室活性分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cd1/10470895/95ec225b4fc7/pone.0290892.g001.jpg

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