Related Experiment Video
Updated: Jan 23, 2026

Separation and Fractionation of Culture Filtrate Proteins (CFPs) from Mycobacterium tuberculosis
Published on: July 11, 2025
Functional and structural investigations of fibronectin-binding protein Apa from Mycobacterium tuberculosis
Chih-Jung Kuo1, Jian Gao2, Jian-Wen Huang3
1Department of Veterinary Medicine, National Chung Hsing University, Taichung 402, Taiwan.
Background:
Alanine and proline-rich protein (Apa) is a secreted antigen of Mycobacterium spp. which involves in stimulating immune responses and adhering to host cells by binding to fibronectin (Fn). Here, we report the crystal structure of Apa from Mycobacterium tuberculosis (Mtb) and its Fn-binding characteristics.
Methods:
The crystal structure of Mtb Apa was determined at resolutions of 1.54 Å. The dissociation constants (KD) of Apa and individual modules of Fn were determined by surface plasmon resonance and enzyme-linked immunosorbent assay. Site-directed mutagenesis was performed to investigate the putative Fn-binding motif of Apa.
Results:
Mtb Apa folds into a large seven-stranded anti-parallel β-sheet which is flanked by three α-helices. The binding affinity of Mtb Apa to individual Fn modules was assessed and the results indicated that the Mtb Apa binds to FnIII-4 and FnIII-5 of Fn CBD segment. Notably, structure analysis suggested that the previously proposed Fn-binding motif 258RWFV261 is buried within the protein and may not be accessible to the binding counterpart.
Conclusions:
The structural and Fn-binding characteristics we reported here provide molecular insights into the multifunctional protein Mtb Apa. FnIII-4 and FnIII-5 of CBD are the only two modules contributing to Apa-Fn interaction.
General Significance:
This is the first study to report the structure and Fn-binding characteristics of mycobacterial Apa. Since Apa plays a central role in stimulating immune responses and host cells adhesion, these results are of great importance in understanding the pathogenesis of mycobacterium. This information shall provide a guidance for the development of anti-mycobacteria regimen.
Insights
The crystal structure of Mycobacterium tuberculosis Apa reveals its fibronectin-binding mechanism. This finding is crucial for understanding mycobacterial pathogenesis and developing new anti-mycobacterial treatments.
Area of Science:
- Structural Biology
- Microbiology
- Immunology
Background:
- Alanine and proline-rich protein (Apa) is a secreted antigen in Mycobacterium species.
- Apa facilitates immune response stimulation and host cell adhesion by binding to fibronectin (Fn).
Purpose of the Study:
- To determine the crystal structure of Apa from Mycobacterium tuberculosis (Mtb).
- To characterize the fibronectin-binding properties of Mtb Apa.
Main Methods:
- X-ray crystallography was used to determine the Mtb Apa structure at 1.54 Å resolution.
- Surface plasmon resonance and ELISA quantified Apa-fibronectin binding affinities.
- Site-directed mutagenesis investigated the putative fibronectin-binding motif.
Main Results:
- Mtb Apa adopts a structure with a large seven-stranded anti-parallel β-sheet and three α-helices.
- Mtb Apa exhibits binding affinity for the FnIII-4 and FnIII-5 modules of fibronectin.
- The proposed 258RWFV261 fibronectin-binding motif was found to be buried within the protein structure.
Conclusions:
- The study provides molecular insights into the structure and fibronectin-binding characteristics of Mtb Apa.
- Apa-fibronectin interaction is mediated exclusively by the FnIII-4 and FnIII-5 modules of fibronectin's CBD segment.
More Related Videos
Related Concept Videos
Structural Protein Function
Collagen, the most abundant protein in mammals, is found throughout the body. In connective tissue, such as skin, ligaments, and tendons, it provides tensile strength and elasticity. In bones and teeth, it mineralizes to...
Structural Protein Function
Protein and Protein Structure
A protein's shape is critical to its function. For example, an enzyme...
Mechanical Protein Functions
Fruit Development, Structure, and Function
Protein and Protein Structures

