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Crystal structure and substrate specificity of ExoY,a unique T3SS mediated secreted nucleotidyl cyclase toxin from Pseudomonas aeruginosa
Authors:Basavraj Khanppnavar  Saumen Datta
Institution:1. Department of Structural Biology and Bioinformatics, CSIR-Indian Institute of Chemical Biology (CSIR-IICB), Kolkata, India;2. Academy of Scientific and Innovative Research (AcSIR), India
Abstract:

Background

The nucleotidyl cyclase toxin ExoY is an important virulence determinant of Pseudomonas aeruginosa that causes severe acute and chronic infections in immune-compromised individuals. Additionally, this unique T3SS effector shows a striking preference for cUMP, a newly identified non-canonical secondary messenger. Thereby, ExoY is also considered as a potential tool to study unexplored cUMP signaling pathways.

Methods

The crystal structure of ExoY was determined at 2.2?Å resolutions by in-situ proteolysis assisted crystallization and Rosetta-molecular replacement method. Additionally, isothermal calorimetric (ITC) and molecular dynamic (MD) simulation studies were also carried out to gain molecular insights into its substrate specificity and catalysis.

Results and conclusion

ExoY is a partially unfolded protein with higher propensity to form soluble higher-order oligomers. However, with meticulous attempts of removing of disordered regions by proteases, the recalcitrant ExoY could be successfully crystallized. The crystal structure of ExoY revealed similar overall structural fold present in other anthrax toxA family of nucleotidyl cyclases, with two-to-three distinctly conserved regions conferring specificity to eukaryotic binding partner. The in-vitro catalytic preference of ExoY is in the following order: cGMP > cUMP > cAMP > cCMP. The substrate specificity of ExoY mainly depends on its ability to bind NTP in proper geometrical orientations. ExoY also seems to prefer one-metal-ion dependent catalysis than two-metal-ion dependent catalysis.

General significance

Our results provide much needed structural insight on ExoY, an important virulence determinant of Pseudomonas aeruginosa and an exciting tool to study non-canonical cNMP signaling pathways.

Accession numbers

The structure factors and coordinate files have been deposited in the Protein Data Bank with accession number 5XNW.
Keywords:X-ray crystallography  Nucleotidyl cyclase toxins  T3SS  Anthrax toxA family  Non-canonical secondary messengers  One-metal-ion dependent catalysis  ExoY  exogenous toxin Y  T3SS  Type III secretory systems  AA-NC  actin-activated nucleotidyl cyclase  EF  edema factor  cNMP  cyclic mononucleotide phosphates  cAMP  adenosine 3′  5′-cyclic monophosphate  cGMP  guanosine 3′  5′-cyclic monophosphate  cCMP  cytidine 3′  5′-cyclic monophosphate  cUMP  uridine 3′  5′-cyclic monophosphate  cIMP  inosine 3′  5′-cyclic monophosphate  ATP  adenosine triphosphate  GTP  guanosine triphosphate  CTP  cytidine triphosphate  UTP  uridine triphosphate  SDS-PAGE  sodium dodecyl sulfate polyacrylamide gel electrophoresis  SEC  size-exclusion chromatography  DLS  dynamic light scattering  ITC  isothermal calorimetry  MD  molecular dynamics  TAK1  transforming growth factor-beta-activated kinase 1  Pa  Pseudomonas aeruginosa  Vv  Vibrio vulnificus  MR  molecular replacement  RMSD  root mean square deviation  RRCAT  Raja Raman Center for Advanced Technology  IPTG  isopropyl-b-D-thiogalactoside  NTA  nitrilotriacetic acid
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