Purification, Characterization, and Structural Studies of a Sulfatase from .

Molecules

Integrated Micro-Chromatography Systems, 110 Centrum Drive, Irmo, SC 29063, USA.

Published: December 2021

AI Article Synopsis

  • Sulfatases are enzymes that remove sulfate from various organic compounds and have potential uses in biotechnology for analyzing sulfated metabolites like steroids.
  • The study focuses on a specific sulfatase called PyuS found in a bacterium, characterized by a unique genetic sequence and the presence of a special modification at its active site.
  • PyuS was purified and showed activity on some aromatic sulfated and phosphate substrates, but it was not effective on certain steroid sulfates.

Article Abstract

Sulfatases are ubiquitous enzymes that hydrolyze sulfate from sulfated organic substrates such as carbohydrates, steroids, and flavones. These enzymes can be exploited in the field of biotechnology to analyze sulfated metabolites in humans, such as steroids and drugs of abuse. Because genomic data far outstrip biochemical characterization, the analysis of sulfatases from published sequences can lead to the discovery of new and unique activities advantageous for biotechnological applications. We expressed and characterized a putative sulfatase (PyuS) from the bacterium . PyuS contains the (C/S)XPXR sulfatase motif, where the Cys or Ser is post-translationally converted into a formylglycine residue (FGly). His-tagged PyuS was co-expressed in with a formylglycine-generating enzyme (FGE) from and purified. We obtained several crystal structures of PyuS, and the FGly modification was detected at the active site. The enzyme has sulfatase activity on aromatic sulfated substrates as well as phosphatase activity on some aromatic phosphates; however, PyuS did not have detectable activity on 17α-estradiol sulfate, cortisol 21-sulfate, or boldenone sulfate.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746622PMC
http://dx.doi.org/10.3390/molecules27010087DOI Listing

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