Rationalizing the Influence of the Binding Affinity on the Activity of Phosphoserine Phosphatases

Author:

Chiba Yoko12ORCID,Ooka Hideshi1ORCID,Wintzer Marie E.1,Tsunematsu Nao1,Nogawa Toshihiko3ORCID,Suzuki Takehiro4ORCID,Dohmae Naoshi4ORCID,Nakamura Ryuhei15ORCID

Affiliation:

1. Biofunctional Catalyst Research Team RIKEN Center for Sustainable Resource Science 2-1 Hirosawa Wako Saitama 351-0198 Japan

2. Faculty of Life and Environmental Science University of Tsukuba 1-1-1 Tennoudai Tsukuba Ibaraki 305-8577 Japan

3. Molecular Structure Characterization unit RIKEN Center for Sustainable Resource Science 2-1 Hirosawa Wako Saitama 351-0198 Japan

4. Biomolecular Characterization Unit RIKEN Center for Sustainable Resource Science 2-1 Hirosawa Wako Saitama 351-0198 Japan

5. Earth-Life Science Institute (ELSI) Tokyo Institute of Technology 2-12-IE-1 Ookayama Meguro-ku Tokyo 152-8550 Japan

Abstract

AbstractThe Sabatier principle states that catalytic activity can be maximized when the substrate binding affinity is neither too strong nor too weak. Recent studies have shown that the activity of several hydrolases is maximized at intermediate values of the binding affinity (Michaelis–Menten constant: Km). However, it remains unclear whether this concept of artificial catalysis is applicable to enzymes in general, especially for those which have evolved under different reaction environments. Herein, we show that the activity of phosphoserine phosphatase is also enhanced at an intermediate Km value of approximately 0.5 mM. Within our dataset, the variation of Km by three orders of magnitude accounted for a roughly 18‐fold variation in the activity. Owing to the high phylogenetic and physiological diversity of our dataset, our results support the importance of optimizing Km for enzymes in general. On the other hand, a 77‐fold variation in the activity was attributed to other physicochemical parameters, such as the Arrhenius prefactor of kcat, and could not be explained by the Sabatier principle. Therefore, while tuning the binding affinity according to the Sabatier principle is an important consideration, the Km value is only one of many physicochemical parameters which must be optimized to maximize enzymatic activity.

Funder

Japan Science and Technology Agency

Publisher

Wiley

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