To Construct an Engineered ()-Equol Resistant for ()-Equol Production.

Front Microbiol

Key Laboratory of Comprehensive Utilization of Advantage Plants Resources in Hunan South, College of Chemistry and Bioengineering, Hunan University of Science and Engineering, Yongzhou, China.

Published: June 2018


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

()-equol is one of the major metabolites of daidzein that is produced by human and animal gut bacteria. Most of the physiological functions of soybean isoflavones, such as anti-oxidative activity, anti-cancer activity, and cardiovascular protection have been ascribed to ()-equol. However, only 30-50% people contain this kind of equol-producing bacteria, and therefore are able to convert daidzein to ()-equol. Administration of ()-equol may be more beneficial than soybean isoflavones. The aim of this study was to construct an engineered ()-equol resistant to enhance ()-equol production . First, transposon mutagenesis libraries were constructed and screened to isolate the ()-equol resistant mutant strain BL21 () in order to overcome the inhibitory effects of ()-equol on bacterial growth. Bacterial full genome scan sequencing and overexpression results revealed that the gene was responsible for this resistance. Second, the ()-equol-producing genes L-, L-, L-, and L- of strain 20-92 were synthesized and cloned into compatible vectors, pETDuet-1 and pCDFDuet-1. These plasmids were subsequently transformed into BL21 (DE3) and its mutant BL21 (). Both engineered BL21 (DE3) and BL21 () could use daidzein as substrate to produce ()-equol under both anaerobic and aerobic conditions. As expected, engineered BL21 () had faster growth rates than BL21 (DE3) when supplemented with high concentrations of ()-equol. The yield and the daidzein utilization ratio were higher for engineered BL21 (). Interestingly, engineered BL21 () was able to convert daidzein to ()-equol efficiently under aerobic conditions, providing a convenient method for ()-equol production . In addition, a two-step method was developed to produce ()-equol using daidzin as substrate.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5994542PMC
http://dx.doi.org/10.3389/fmicb.2018.01182DOI Listing

Publication Analysis

Top Keywords

engineered bl21
16
-equol
15
-equol resistant
12
-equol production
12
bl21 de3
12
bl21
9
construct engineered
8
engineered -equol
8
soybean isoflavones
8
convert daidzein
8

Similar Publications

Current antithrombotic therapies face dual constraints of bleeding complications and monitoring requirements. Although natural hirudin provides targeted thrombin inhibition, its clinical adoption is hindered by sourcing limitations. This study developed a recombinant hirudin variant HMg (rHMg) with enhanced anticoagulant activity through genetic engineering and established cost-effective large-scale production methods.

View Article and Find Full Text PDF

Prokaryotic Expression and Purification of the hSox2-HMG Domain.

Bio Protoc

August 2025

Institute of Health Sciences and Technology (IHST), Institutes of Physical Sciences and Information Technology, Anhui University, Hefei, China.

The Sox (SRY-related HMG-box) protein family plays a crucial role in cellular differentiation, development, and gene regulation, with the HMG (high-mobility group) domain responsible for DNA binding and transcriptional regulation. Proteins in the SOX gene family contain an HMG domain that shares 50% homology with the HMG domain of the sex-determining factor SRY gene. The SOX gene family comprises 30 proteins, which are classified into 10 groups (A-H).

View Article and Find Full Text PDF

[Construction of IgG4 Fc variants and their serum half-lives].

Sheng Wu Gong Cheng Xue Bao

August 2025

School of Biomedical Sciences and Engineering, South China University of Technology, Guangzhou 510006, Guangdong, China.

In this study, we constructed a series of recombinant Fc variants of immunoglobulin G4 (IgG4), screened the fragment crystallizable (Fc) variants with significantly prolonged serum half-lives, and analyzed the relationship between mutation site and half-life, aiming to provide a theoretical basis for the development of IgG4 antibodies and Fc fusion protein-based drugs. Nine gene sites were selected for mutation, and different mutation sites were combined. The variant expression plasmids pET24b-Fc were constructed by molecular cloning and point mutation.

View Article and Find Full Text PDF

Identification of histidine decarboxylase and its multi-enzyme cascade system for cost-efficient biosynthesis of carcinine.

3 Biotech

September 2025

Key Laboratory of Bioorganic Synthesis of Zhejiang Province, College of Biotechnology and Bioengineering, Zhejiang University of Technology, No. 18 Chaowang Road, Hangzhou, 310014 Zhejiang Province People's Republic of China.

Unlabelled: Carcinine, a bioactive compound with antioxidant and anti-glycation properties, holds significant promise for applications in pharmaceuticals and cosmetics. This study demonstrates a novel strategy for the direct biosynthesis of carcinine from low-cost L-histidine and β-alanine using a multi-enzyme cascade system. A highly efficient histidine decarboxylase (PphHDC) was identified.

View Article and Find Full Text PDF

Gene Regulation by RNAi on Apis mellifera ligustica Colonies Based on Engineering Bacteria and Nanomaterials.

Arch Insect Biochem Physiol

August 2025

State Key Laboratory of Resource Insects, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing, China.

Honey bees, as indispensable pollinators, can promote agricultural production and maintain ecological balance. Because of honey bees' eusociality, studying honeybee colonies is of great importance. RNA interference (RNAi) has emerged as a powerful tool for honey bee research.

View Article and Find Full Text PDF