Laboratory of Neurophysiology, GIGA-Neurosciences, University of Liege, Liege, Belgium.
Palladin Institute of Biochemistry, National Academy of Sciences of Ukraine, Kyiv, Ukraine.
Biochim Biophys Acta Gen Subj. 2022 Mar;1866(3):130071. doi: 10.1016/j.bbagen.2021.130071. Epub 2021 Dec 20.
Thiamine diphosphate (ThDP), an indispensable cofactor for oxidative energy metabolism, is synthesized through the reaction thiamine + ATP ⇆ ThDP + AMP, catalyzed by thiamine pyrophosphokinase 1 (TPK1), a cytosolic dimeric enzyme. It was claimed that the equilibrium of the reaction is in favor of the formation of thiamine and ATP, at odds with thermodynamic calculations. Here we show that this discrepancy is due to feedback inhibition by the product ThDP.
We used a purified recombinant mouse TPK1 to study reaction kinetics in the forward (physiological) and for the first time also in the reverse direction.
K values reported previously are strongly underestimated, due to the fact the reaction in the forward direction rapidly slows down and reaches a pseudo-equilibrium as ThDP accumulates. We found that ThDP is a potent non-competitive inhibitor (K ≈ 0.4 μM) of the forward reaction. In the reverse direction, a true equilibrium is reached with a K of about 2 × 10, strongly in favor of ThDP formation. In the reverse direction, we found a very low K for ThDP (0.05 μM), in agreement with a tight binding of ThDP to the enzyme.
Inhibition of TPK1 by ThDP explains why intracellular ThDP levels remain low after administration of even very high doses of thiamine. Understanding the consequences of this feedback inhibition is essential for developing reliable methods for measuring TPK activity in tissue extracts and for optimizing the therapeutic use of thiamine and its prodrugs with higher bioavailability under pathological conditions.
焦磷酸硫胺素(ThDP)是氧化能量代谢所必需的辅酶,通过硫胺素+ATP ⇆ ThDP + AMP 的反应合成,由细胞质二聚酶硫胺素焦磷酸激酶 1(TPK1)催化。据称,该反应的平衡有利于硫胺素和 ATP 的形成,与热力学计算结果不符。在这里,我们表明这种差异是由于产物 ThDP 的反馈抑制所致。
我们使用纯化的重组小鼠 TPK1 来研究正向(生理)和首次在反向的反应动力学。
以前报道的 K 值被严重低估,因为正向反应迅速减慢,随着 ThDP 的积累达到假性平衡。我们发现 ThDP 是该正向反应的强烈非竞争性抑制剂(K≈0.4μM)。在反向反应中,达到真正的平衡,K 值约为 2×10,强烈有利于 ThDP 的形成。在反向反应中,我们发现 ThDP 的 K 值非常低(0.05μM),这与 ThDP 与酶的紧密结合一致。
ThDP 对 TPK1 的抑制解释了为什么即使给予非常高剂量的硫胺素,细胞内 ThDP 水平仍保持较低水平。了解这种反馈抑制的后果对于开发可靠的方法来测量组织提取物中的 TPK 活性以及在病理条件下优化具有更高生物利用度的硫胺素及其前药的治疗用途至关重要。