Srivastava D K, Bernhard S A
Science. 1986 Nov 28;234(4780):1081-6. doi: 10.1126/science.3775377.
The concentrations of enzyme sites in cells are usually higher than the concentrations of cognate intermediary metabolites. Therefore metabolic pathways or substantial segments of pathways may proceed by the direct transfer of metabolites from one enzyme site to the next by means of enzyme-enzyme complex formation. This mechanism of metabolite transfer differs from that usually assumed where dissociation and random diffusion of metabolite through the aqueous environment is responsible for the transfer to the next enzyme site. Since the direct transfer mechanism does not involve the aqueous environment, the energetics of metabolite interconversion can differ from expectations based on aqueous solution data. Evidence is summarized suggesting that metabolite is transformed and transferred with equal facility everywhere in the direct transfer pathway.
细胞中酶位点的浓度通常高于同源中间代谢物的浓度。因此,代谢途径或途径的大部分可能通过酶 - 酶复合物的形成将代谢物从一个酶位点直接转移到下一个酶位点来进行。这种代谢物转移机制不同于通常所假设的,即代谢物通过水性环境的解离和随机扩散负责转移到下一个酶位点。由于直接转移机制不涉及水性环境,代谢物相互转化的能量学可能与基于水溶液数据的预期不同。总结的证据表明,在直接转移途径的各处,代谢物都能以相同的容易程度进行转化和转移。