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Updated: Mar 22, 2026

Biochemical and Structural Characterization of the Carbohydrate Transport Substrate-binding-protein SP0092
Published on: October 2, 2017
Carbohydrate-binding module 74 is a novel starch-binding domain associated with large and multidomain α-amylase
Vincent Valk1, Alicia Lammerts van Bueren1, Rachel M van der Kaaij1
1Microbial Physiology, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), The Netherlands.
Abstract:
Microbacterium aurum B8.A is a bacterium that originates from a potato starch-processing plant and employs a GH13 α-amylase (MaAmyA) enzyme that forms pores in potato starch granules. MaAmyA is a large and multi-modular protein that contains a novel domain at its C terminus (Domain 2). Deletion of Domain 2 from MaAmyA did not affect its ability to degrade starch granules but resulted in a strong reduction in granular pore size. Here, we separately expressed and purified this Domain 2 in Escherichia coli and determined its likely function in starch pore formation. Domain 2 independently binds amylose, amylopectin, and granular starch but does not have any detectable catalytic (hydrolytic or oxidizing) activity on α-glucan substrates. Therefore, we propose that this novel starch-binding domain is a new carbohydrate-binding module (CBM), the first representative of family CBM74 that assists MaAmyA in efficient pore formation in starch granules. Protein sequence-based BLAST searches revealed that CBM74 occurs widespread, but in bacteria only, and is often associated with large and multi-domain α-amylases containing family CBM25 or CBM26 domains. CBM74 may specifically function in binding to granular starches to enhance the capability of α-amylase enzymes to degrade resistant starches (RSs). Interestingly, the majority of family CBM74 representatives are found in α-amylases originating from human gut-associated Bifidobacteria, where they may assist in resistant starch degradation. The CBM74 domain thus may have a strong impact on the efficiency of RS digestion in the mammalian gastrointestinal tract.
Insights
A novel starch-binding domain, CBM74, was identified in Microbacterium aurum B8.A. This domain enhances α-amylase pore formation in starch granules, potentially improving resistant starch digestion in the gut.
Area of Science:
- Biochemistry
- Microbiology
- Enzymology
Background:
- Microbacterium aurum B8.A produces a GH13 α-amylase (MaAmyA) that creates pores in potato starch granules.
- MaAmyA is a multi-modular enzyme with a novel C-terminal domain (Domain 2) crucial for pore size reduction upon deletion.
Purpose of the Study:
- To investigate the function of Domain 2 in starch pore formation.
- To characterize Domain 2 as a potential carbohydrate-binding module (CBM).
Main Methods:
- Purification of Domain 2 from Escherichia coli.
- Assessing the binding activity of Domain 2 to various starch components (amylose, amylopectin, granular starch).
- Testing for catalytic activity of Domain 2 on α-glucan substrates.
Main Results:
- Domain 2 independently binds amylose, amylopectin, and granular starch.
- Domain 2 exhibits no detectable hydrolytic or oxidizing activity.
- Domain 2 is proposed as the first member of a new CBM family, CBM74.
Conclusions:
- CBM74 is a novel starch-binding domain that enhances α-amylase pore formation in starch granules.
- CBM74 is widespread in bacterial α-amylases, particularly those from Bifidobacteria, suggesting a role in resistant starch degradation.
- CBM74 may significantly impact resistant starch digestion in the mammalian gut.
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