Enzymatic phosphorylation of uridine and cytidine using calcium‐based dual‐enzyme nanoflowers

Author:

Zhao Ziye1,Nie Ning1,Li Xinwei1,Shi Ye2,Liu Xudong2,Zhang Yifei1ORCID

Affiliation:

1. State Key Laboratory of Chemical Resource Engineering, Beijing Advanced Innovation Center for Soft Matter Science and Engineering Beijing University of Chemical Technology Beijing China

2. Weihai Baihe Biology Technological Co., Ltd. Weihai China

Abstract

AbstractNucleotides, such as uridine 5′‐monophosphate (5′‐UMP) and cytidine 5′‐monophosphate (5′‐CMP), are heavily demanded as food additives, dietary supplements, and medicinal intermediates. Although enzymatic phosphorylation is an effective approach to producing these nucleosides, its practical application is challenging due to the need for the expensive enzymes and coenzyme guanosine‐5′‐triphosphate (GTP). Here we prepared biocompatible calcium‐based nanoflowers incorporated with cascade enzymes, uridine‐cytidine kinase (UCK) and acetate kinase (ACK), for the production of nucleotides. The spatial distribution of these enzymes was optimized to maximize their catalytic performances. The most active nanoflowers (Ca3(PO4)2& ACK)& UCK that display the rate‐limiting enzyme UCK on the outer layer were used in a packed‐bed reactor for continuous synthesis of 5′‐UMP and 5′‐CMP. The catalytic performance of the catalyst retained over 80% within 10 h, showing good operational stability.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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