Target intelligence / Profile preview

Bile salt hydrolase-producing intestinal bacterial taxa (BSH-producing bacteria)

Molecular classification
Enzyme, Amidohydrolase, Microbiome-derived target
01

Overview

Bile salt hydrolase-producing intestinal bacterial taxa are a diverse group of gut microorganisms, including genera such as Lactobacillus, Bifidobacterium, and Bacteroides, that express the enzyme bile salt hydrolase (BSH; EC 3.5.1.24) [1.3.1, 1.3.3]. This enzyme catalyzes the deconjugation of bile salts, a critical gateway step in bile acid metabolism that converts glycine- or taurine-conjugated bile acids into free bile acids and amino acids [1.1.1, 1.4.4]. This process significantly influences host physiology by reducing the efficiency of lipid emulsification and absorption, promoting the fecal excretion of bile acids, and modulating signaling through host receptors such as the farnesoid X receptor (FXR) and TGR5 [1.1.2, 1.3.1]. Consequently, these bacteria and their BSH enzymes are key therapeutic targets for metabolic disorders, including hypercholesterolemia, obesity, and metabolic dysfunction-associated steatotic liver disease (MASLD) [1.3.3, 1.4.4]. Therapeutic strategies involve the administration of BSH-active probiotics to lower cholesterol or the development of small-molecule BSH inhibitors to regulate energy harvest and metabolic signaling [1.3.2, 1.4.3]. Beyond metabolic health, BSH activity is also linked to inflammatory bowel disease and the prevention of certain infections like giardiasis [1.1.3, 1.4.4]. However, the modulation of BSH activity must be carefully managed, as excessive deconjugation can lead to the formation of potentially carcinogenic secondary bile acids [1.1.1, 1.2.1]. Overall, targeting BSH-producing taxa offers a promising approach to precision microbiome medicine [1.2.1].

Other names
BSH-active gut microbiotaBile salt hydrolase-producing bacteriaCholoylglycine hydrolase-producing bacteriaConjugated bile salt hydrolase-producing bacteria
02

Mechanism of action

Deconjugation of bile salts via hydrolysis of the amide bond; inhibition of the bile salt hydrolase enzyme; modulation of farnesoid X receptor (FXR) and TGR5 signaling; reduction of intestinal cholesterol absorption.

03

Biological functions

Bile acid metabolismLipid metabolismCholesterol homeostasisSignal transductionImmune response modulation
04

Disease associations

HypercholesterolemiaObesityMetabolic syndromeMetabolic dysfunction-associated steatotic liver disease (MASLD)Inflammatory bowel disease (IBD)Type 2 diabetes
05

Safety considerations

Potential for increased secondary bile acid production (carcinogenic risk)Malabsorption of fat-soluble vitaminsGut microbiota dysbiosisAltered drug bioavailability
06

Interacting drugs

Lactobacillus reuteri NCIMB 30242 (Cardioviva)

8 more in the full profile.

07

Biomarkers

Fecal unconjugated bile acid levelsFecal bile salt hydrolase activitySerum LDL cholesterol levelsBSH gene abundance (metagenomics)

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