MSMB variation and prostate cancer risk: clues towards a possible fungal etiology

Siobhan Sutcliffe1, Angelo M De Marzo, Karen S Sfanos

  • 1Division of Public Health Sciences and the Alvin J. Siteman Cancer Center, Department of Surgery, Washington University School of Medicine, St. Louis, Missouri.

The Prostate
|January 28, 2014
PubMed

Insights

Prostate cancer risk is linked to a gene variant affecting prostate secretory protein 94 (PSP94) levels. This review explores PSP94’s protective role, including a novel theory involving its antifungal activity against prostate infections.

Area of Science:

  • Oncology
  • Genetics
  • Microbiology

Background:

  • High-throughput sequencing identified prostate cancer risk loci, including rs10993994 near the MSMB gene.
  • Carriers of the rs10993994 variant allele produce less prostate secretory protein 94 (PSP94), increasing prostate cancer risk.
  • PSP94's protective role in prostate carcinogenesis is suggested, but mechanisms remain unclear.

Purpose of the Study:

  • To review and propose mechanisms for PSP94's protective role against prostate cancer.
  • To explore PSP94's potential tumor suppressive functions.
  • To introduce and detail a novel proposed mechanism involving PSP94's antifungal activity.

Main Methods:

  • Literature review on PSP94's mechanisms of action in prostate cancer.
  • Analysis of existing in vitro and in vivo studies on PSP94 and cell/tumor growth.
  • Synthesis of evidence linking PSP94's fungicidal activity to prostate carcinogenesis and inflammation.

Main Results:

  • PSP94 exhibits tumor suppressive properties by inhibiting cell and tumor growth in experimental models.
  • A novel mechanism proposes PSP94 protects against prostate cancer by limiting intracellular fungal infections.
  • PSP94 demonstrates fungicidal activity in low-calcium environments, relevant to epithelial cell cytosol.

Conclusions:

  • Future research should investigate the proposed antifungal mechanism of PSP94 in prostate cancer.
  • Screening prostate specimens for fungi using advanced molecular techniques is recommended.
  • Understanding PSP94's role in combating fungal infections may reveal new therapeutic strategies for prostate cancer.

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