Yoshida_2019_Biosci.Biotechnol.Biochem_83_1974

Reference

Title : Production of recombinant extracellular cholesterol esterase using consistently active promoters in Burkholderia stabilis - Yoshida_2019_Biosci.Biotechnol.Biochem_83_1974
Author(s) : Yoshida K , Konishi K , Magana-Mora A , Rougny A , Yasutake Y , Muramatsu S , Murata S , Kumagai T , Aburatani S , Sakasegawa SI , Tamura T
Ref : Biosci Biotechnol Biochem , 83 :1974 , 2019
Abstract :

Burkholderia stabilis FERMP-21014 produces highly active cholesterol esterase in the presence of fatty acids. To develop an overexpression system for cholesterol esterase production, we carried out RNA sequencing analyses to screen strongly active promoters in FERMP-21014. Based on gene expression consistency analysis, we selected nine genes that were consistently expressed at high levels, following which we constructed expression vectors using their promoter sequences and achieved overproduction of extracellular cholesterol esterase under fatty acid-free conditions. Of the tested promoters, the promoter of BSFP_0720, which encodes the alkyl hydroperoxide reductase subunit AhpC, resulted in the highest cholesterol esterase activity (24.3 U mL(-1)). This activity level was 243-fold higher than that of the wild-type strain under fatty acid-free conditions. We confirmed that cholesterol esterase was secreted without excessive accumulation within the cells. The gene expression consistency analysis will be useful to screen promoters applicable to the overexpression of other industrially important enzymes.

PubMedSearch : Yoshida_2019_Biosci.Biotechnol.Biochem_83_1974
PubMedID: 31216942
Gene_locus related to this paper: 9burk-EstA

Related information

Gene_locus 9burk-EstA

Citations formats

Yoshida K, Konishi K, Magana-Mora A, Rougny A, Yasutake Y, Muramatsu S, Murata S, Kumagai T, Aburatani S, Sakasegawa SI, Tamura T (2019)
Production of recombinant extracellular cholesterol esterase using consistently active promoters in Burkholderia stabilis
Biosci Biotechnol Biochem 83 :1974

Yoshida K, Konishi K, Magana-Mora A, Rougny A, Yasutake Y, Muramatsu S, Murata S, Kumagai T, Aburatani S, Sakasegawa SI, Tamura T (2019)
Biosci Biotechnol Biochem 83 :1974