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Updated: Jan 25, 2026

Defining Substrate Specificities for Lipase and Phospholipase Candidates
Published on: November 23, 2016
Structural analysis of a Vibrio phospholipase reveals an unusual Ser-His-chloride catalytic triad
Ye Wan1,2,3, Changshui Liu1,2, Qingjun Ma4,2,3,5
1Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.
Abstract:
Phospholipases can disrupt host membranes and are important virulence factors in many pathogens. VvPlpA is a phospholipase A2 secreted by Vibrio vulnificus and essential for virulence. Its homologs, termed thermolabile hemolysins (TLHs), are widely distributed in Vibrio bacteria, but no structural information for this virulence factor class is available. Herein, we report the crystal structure of VvPlpA to 1.4-Å resolution, revealing that VvPlpA contains an N-terminal domain of unknown function and a C-terminal phospholipase domain and that these two domains are packed closely together. The phospholipase domain adopts a typical SGNH hydrolase fold, containing the four conserved catalytic residues Ser, Gly, Asn, and His. Interestingly, the structure also disclosed that the phospholipase domain accommodates a chloride ion near the catalytic His residue. The chloride is five-coordinated in a distorted bipyramid geometry, accepting hydrogen bonds from a water molecule and the amino groups of surrounding residues. This chloride substitutes for the most common Asp/Glu residue and forms an unusual Ser-His-chloride catalytic triad in VvPlpA. The chloride may orient the catalytic His and stabilize the charge on its imidazole ring during catalysis. Indeed, VvPlpA activity depended on chloride concentration, confirming the important role of chloride in catalysis. The VvPlpA structure also revealed a large hydrophobic substrate-binding pocket that is capable of accommodating a long-chain acyl group. Our results provide the first structure of the TLH family and uncover an unusual Ser-His-chloride catalytic triad, expanding our knowledge on the biological role of chloride.
Insights
The crystal structure of Vibrio vulnificus phospholipase A2 (VvPlpA) reveals an unusual catalytic triad involving chloride, essential for its virulence and function.
Area of Science:
- Biochemistry
- Structural Biology
- Microbiology
Background:
- Phospholipases are critical virulence factors in pathogens, disrupting host membranes.
- Vibrio vulnificus phospholipase A2 (VvPlpA) is essential for virulence, but its structure and catalytic mechanism were unknown.
Purpose of the Study:
- To determine the crystal structure of VvPlpA.
- To elucidate the catalytic mechanism of VvPlpA and its homologs (thermolabile hemolysins).
Main Methods:
- X-ray crystallography (1.4-Å resolution).
Main Results:
- The VvPlpA structure revealed two domains: an N-terminal of unknown function and a C-terminal phospholipase domain with an SGNH hydrolase fold.
- An unusual Ser-His-chloride catalytic triad was identified, where chloride replaces a typical Asp/Glu residue.
- Chloride binding near the catalytic histidine is crucial for VvPlpA activity, influencing catalysis and substrate binding.
Conclusions:
- This is the first structure reported for the thermolabile hemolysin family.
- The study uncovers a novel catalytic mechanism involving a chloride ion, expanding the understanding of phospholipase function and the role of chloride in biological catalysis.
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