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一种新型磷酸酶逆转勒洛伊尔途径以促进从葡萄糖合成塔格糖。

A Novel Phosphatase Reverses the Leloir Pathway to Promote Tagatose Synthesis from Glucose.

作者信息

Love Aaron M, Toomey Christopher G, Kumar Abhishek, Kashyap Sukesh Narayan, Santhamoorthy Dhinesh Kumar, Muthuraj Likith, Lynch Hannah L, Ajikumar Parayil Kumaran, Pravin Kumar R, Nair Nikhil U, Santos Christine N S

机构信息

Manus Bio, Waltham, MA 02453.

Department of Chemical & Biological Engineering, Tufts University, Medford, MA 02155.

出版信息

bioRxiv. 2025 Aug 1:2025.07.29.665981. doi: 10.1101/2025.07.29.665981.

Abstract

d-Tagatose is a natural, low-calorie, rare monosaccharide that has gained substantial interest as an alternative sweetener. It offers numerous benefits, including a low glycemic index, prebiotic properties, and the ability to lower blood sugar levels. Currently, tagatose is primarily produced industrially through the isomerization of galactose, utilizing both chemical and enzymatic catalysis. While these established processes can produce tagatose, they are inefficient and expensive. Recent works have demonstrated alternative biosynthetic routes to produce d-tagatose but suffer from low theoretical yield and/or reliance on expensive feedstocks. This study demonstrates a novel biochemical pathway to produce d-tagatose directly from glucose using a whole-cell process with . This process is distinct from other biosynthetic schemes and utilizes a newly discovered galactose-1-phosphate-selective phosphatase to drive the native Leloir pathway in reverse and synthesize the substrate d-galactose directly from d-glucose. Our analysis of the phosphatase reveals how an ensemble of intermolecular hydrogen bonds governs substrate specificity. By co-expressing this phosphatase and an l-arabinose isomerase in a modified strain background, we demonstrate production of tagatose directly from glucose. In initial studies, we generated ~10.5 g/L galactose from 30 g/L glucose (35 % yield) while also producing > 1 g/L tagatose. This demonstrates the feasibility of a novel approach to tagatose production in vivo with a theoretical pathway yield of 94.9 %, which is substantially higher than previously proposed tagatose biosynthetic schemes.

摘要

D-塔格糖是一种天然的低热量稀有单糖,作为一种替代甜味剂已引起了广泛关注。它具有许多益处,包括低血糖指数、益生元特性以及降低血糖水平的能力。目前,塔格糖主要通过半乳糖的异构化在工业上生产,采用化学和酶催化两种方法。虽然这些既定工艺可以生产塔格糖,但效率低下且成本高昂。最近的研究表明了生产D-塔格糖的替代生物合成途径,但存在理论产量低和/或依赖昂贵原料的问题。本研究展示了一种利用全细胞过程直接从葡萄糖生产D-塔格糖的新型生化途径。该过程与其他生物合成方案不同,利用新发现的半乳糖-1-磷酸选择性磷酸酶来逆转天然的勒洛伊尔途径,并直接从D-葡萄糖合成底物D-半乳糖。我们对该磷酸酶的分析揭示了分子间氢键的集合如何决定底物特异性。通过在改良的菌株背景中共表达这种磷酸酶和L-阿拉伯糖异构酶,我们证明了可直接从葡萄糖生产塔格糖。在初步研究中,我们从30 g/L葡萄糖中生成了约10.5 g/L半乳糖(产率35%),同时还产生了>1 g/L塔格糖。这证明了一种在体内生产塔格糖的新方法的可行性,其理论途径产率为94.9%,大大高于先前提出的塔格糖生物合成方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3083/12324327/c430ebe1a973/nihpp-2025.07.29.665981v1-f0001.jpg

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