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ClpX-dependent regulatory pathway exacerbates Streptococcus pyogenes pathogenesis in diabetic skin infection

Shuiqiao Liu1, Anne L Rosen2,3, Benjamin S Olson2

  • 1Department of Biomedical Sciences, Marshall University Joan C. Edwards School of Medicine, Huntington, West Virginia, USA.

Mbio
|June 9, 2026
PubMed

Insights

Group A Streptococcus infections are more severe in diabetic patients due to impaired immune function. The Streptococcus pyogenes ClpX-dependent regulatory pathway significantly worsens diabetic skin infections by disrupting neutrophil function and delaying healing.

Area of Science:

  • Microbiology
  • Immunology
  • Pathogen-host interactions

Background:

  • Diabetes mellitus impairs immune function, increasing susceptibility to severe bacterial infections.
  • Group A Streptococcus (GAS) infections are particularly severe in diabetic individuals, characterized by delayed healing and inflammation.
  • Mechanisms by which GAS virulence factors exacerbate diabetic immune dysfunction are not fully understood.

Purpose of the Study:

  • To investigate the role of the GAS ClpX-dependent regulatory pathway (CDRP) in shaping outcomes of skin infections in a diabetic context.
  • To elucidate how CDRP interacts with diabetic immune dysfunction to influence bacterial burden, inflammation, and tissue repair.

Main Methods:

  • Utilized two murine models of type I diabetes to study GAS skin infections.
  • Compared wild-type GAS and a *clpX* deletion mutant in both diabetic and non-diabetic mice.
  • Assessed bacterial burden, inflammatory responses, neutrophil recruitment and function, NET accumulation and clearance, and polymicrobial infections.

Main Results:

  • Diabetic mice exhibited more severe and persistent GAS skin infections with higher bacterial loads and exaggerated inflammation.
  • Deletion of *clpX* attenuated GAS virulence, but its pathogenic effects were amplified in diabetic mice.
  • CDRP in diabetic mice led to sustained inflammation, altered neutrophil behavior, impaired NET clearance, and delayed infection resolution.

Conclusions:

  • The GAS ClpX-dependent regulatory pathway significantly exacerbates skin infection severity in diabetic hosts.
  • CDRP contributes to disease by promoting neutrophil dysregulation, excessive NET accumulation, and impaired infection resolution.
  • Targeting pathogen regulatory pathways like CDRP may be a promising therapeutic strategy for infections in immunocompromised individuals, such as those with diabetes.

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