A continuous fluorescence assay for simple quantification of bile salt hydrolase activity in the gut microbiome

Feb 6, 2019Scientific reports

A continuous fluorescence test to easily measure bile salt breaking activity in gut bacteria

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Abstract

A continuous fluorescence assay enables the characterization of (BSH) activity in various samples, including human gut microbiome samples.

  • The gut microbiota influences host bile homeostasis by modifying bile acid composition.
  • Bile salt hydrolase (BSH) activity is crucial for the modification of bile salts and is associated with beneficial effects on host health.
  • Many probiotic taxa contain genes encoding BSHs, highlighting their potential therapeutic relevance.
  • The developed assay allows for sensitive monitoring of BSH activity in purified protein, cell lysates, and whole cells.
  • This method demonstrates the first in vivo characterization of BSH activity and enables non-destructive quantification in human fecal microbiome samples.

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Key numbers

mid-nanomolar
Enzyme Detection Limit
Lowest enzyme concentration detectable with the CA-AMCA probe.
500 µg/ml
Activity in Human Fecal Samples
Protein concentration in human gut microbiome lysate for activity analysis.

Full Text

What this is

  • This research develops a continuous fluorescence assay for quantifying () activity in the gut microbiome.
  • activity is crucial for bile acid metabolism and is linked to host health.
  • The assay can analyze purified proteins, cell lysates, whole cells, and human gut microbiome samples, providing a non-destructive method for monitoring activity.

Essence

  • A continuous fluorescence assay was developed to quantify activity, enabling real-time monitoring in various biological samples, including human gut microbiome extracts.

Key takeaways

  • The CA-AMCA probe allows for real-time monitoring of activity with high sensitivity, detecting enzyme concentrations as low as mid-nanomolar. This sensitivity surpasses traditional methods, which require micromolar concentrations.
  • The assay successfully quantifies activity in complex biological samples, including human fecal microbiome extracts, marking the first continuous monitoring of in such contexts.
  • The method's applicability to both whole cells and microbial communities positions it as a valuable tool for understanding the role of in gut health and developing probiotic therapies.

Caveats

  • The assay's performance in diverse microbial environments needs further validation to ensure reliability across different gut microbiomes.
  • While the assay shows promise, its clinical utility in patient samples requires additional studies to confirm its effectiveness in real-world settings.

Definitions

  • bile salt hydrolase (BSH): An enzyme that deconjugates bile salts, facilitating their modification by gut microbiota and influencing bile acid metabolism.

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