Related Experiment Video
Updated: Apr 10, 2026

X-Ray Crystallography to Study the Oligomeric State Transition of the Thermotoga maritima M42 Aminopeptidase TmPep1050
Published on: May 13, 2020
New aminopeptidase from "microbial dark matter" archaeon
Karolina Michalska1, Andrew D Steen1, Gekleng Chhor1
1*Midwest Center for Structural Genomics and Structural Biology Center, Biosciences Division, Argonne National Laboratory, Argonne, Illinois, USA; Department of Microbiology and Department of Earth and Planetary Sciences, University of Tennessee, Knoxville, Tennessee, USA; and Department of Biochemistry and Molecular Biology, University of Chicago, Chicago, Illinois, USA.
Abstract:
Marine sediments host a large population of diverse, heterotrophic, uncultured microorganisms with unknown physiologies that control carbon flow through organic matter decomposition. Recently, single-cell genomics uncovered new key players in these processes, such as the miscellaneous crenarchaeotal group. These widespread archaea encode putative intra- and extracellular proteases for the degradation of detrital proteins present in sediments. Here, we show that one of these enzymes is a self-compartmentalizing tetrameric aminopeptidase with a preference for cysteine and hydrophobic residues at the N terminus of the hydrolyzed peptide. The ability to perform detailed characterizations of enzymes from native subsurface microorganisms, without requiring that those organisms first be grown in pure culture, holds great promise for understanding key carbon transformations in the environment as well as identifying new enzymes for biomedical and biotechnological applications.
More Related Videos
Related Concept Videos
Amino Acid Catabolism
Deep Sea Microbial Ecology
Diversity of Archaea III
Antimicrobial Proteins
Interferons
Interferons (IFNs) are proteins produced by lymphocytes, macrophages, and fibroblasts infected with viruses. While IFNs cannot prevent viruses from entering and...
Diversity of Archaea II
Archaeal Cell Wall

