Unveiling the role of novel carbohydrate‐binding modules in laminarin interaction of multimodular proteins from marine Bacteroidota during phytoplankton blooms

Author:

Zühlke Marie‐Katherin12ORCID,Ficko‐Blean Elizabeth3ORCID,Bartosik Daniel12ORCID,Terrapon Nicolas4ORCID,Jeudy Alexandra3ORCID,Jam Murielle3ORCID,Wang Fengqing5,Welsch Norma12,Dürwald Alexandra16ORCID,Martin Laura Torres1,Larocque Robert3,Jouanneau Diane3ORCID,Eisenack Tom1ORCID,Thomas François3ORCID,Trautwein‐Schult Anke7ORCID,Teeling Hanno5ORCID,Becher Dörte7ORCID,Schweder Thomas12ORCID,Czjzek Mirjam3ORCID

Affiliation:

1. Pharmaceutical Biotechnology Institute of Pharmacy, University Greifswald Greifswald Germany

2. Institute of Marine Biotechnology Greifswald Germany

3. Integrative Biology of Marine Models (LBI2M), Station Biologique de Roscoff (SBR) Sorbonne Université, CNRS Roscoff France

4. Architecture et Fonction des Macromolécules Biologiques (AFMB) Aix‐Marseille Université (AMU, UMR7257), CNRS Marseille France

5. Max Planck Institute for Marine Microbiology Bremen Germany

6. Helmholtz Institute for One Health, Helmholtz Centre for Infection Research HZI Greifswald Germany

7. Microbial Proteomics Institute of Microbiology, University Greifswald Greifswald Germany

Abstract

AbstractLaminarin, a β(1,3)‐glucan, serves as a storage polysaccharide in marine microalgae such as diatoms. Its abundance, water solubility and simple structure make it an appealing substrate for marine bacteria. Consequently, many marine bacteria have evolved strategies to scavenge and decompose laminarin, employing carbohydrate‐binding modules (CBMs) as crucial components. In this study, we characterized two previously unassigned domains as laminarin‐binding CBMs in multimodular proteins from the marine bacterium Christiangramia forsetii KT0803T, thereby introducing the new laminarin‐binding CBM families CBM102 and CBM103. We identified four CBM102s in a surface glycan‐binding protein (SGBP) and a single CBM103 linked to a glycoside hydrolase module from family 16 (GH16_3). Our analysis revealed that both modular proteins have an elongated shape, with GH16_3 exhibiting greater flexibility than SGBP. This flexibility may aid in the recognition and/or degradation of laminarin, while the constraints in SGBP could facilitate the docking of laminarin onto the bacterial surface. Exploration of bacterial metagenome‐assembled genomes (MAGs) from phytoplankton blooms in the North Sea showed that both laminarin‐binding CBM families are widespread among marine Bacteroidota. The high protein abundance of CBM102‐ and CBM103‐containing proteins during phytoplankton blooms further emphasizes their significance in marine laminarin utilization.

Funder

Centre National de la Recherche Scientifique

Deutsche Forschungsgemeinschaft

Sorbonne Université

Helmholtz Association

Publisher

Wiley

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