Isolation and expression of a gene which encodes a wall-associated proteinase of Coccidioides immitis

G T Cole1, S W Zhu, L L Hsu

  • 1Department of Botany, University of Texas, Austin 78713-7640.

Infection and Immunity
|February 1, 1992
PubMed

Insights

Researchers isolated a gene encoding a 34 kDa proteinase from Coccidioides immitis, a human pathogen. This proteinase is involved in parasitic cell wall development and turnover, with peak expression during early growth stages.

Area of Science:

  • Mycology
  • Molecular Biology
  • Biochemistry

Background:

  • Coccidioides immitis is a fungal pathogen causing respiratory disease.
  • A 34 kDa chymotrypsin-like serine proteinase is associated with C. immitis parasitic cell walls.
  • This proteinase is hypothesized to play a role in spherule development.

Purpose of the Study:

  • To isolate and characterize the gene encoding the 34 kDa proteinase from C. immitis.
  • To confirm the identity of the isolated cDNA with the proteinase.
  • To investigate the expression pattern of the proteinase gene during parasitic cell development.

Main Methods:

  • Construction of a C. immitis expression library in lambda ZAP II phage vector.
  • Isolation of a 1.2-kb cDNA clone.
  • Peptide sequencing of purified proteinase and comparison with deduced amino acid sequence.
  • Western blot analysis of protein expressed from cDNA fragment in E. coli.
  • Northern hybridization to determine mRNA size and expression levels.

Main Results:

  • A 1.2-kb cDNA was isolated and suggested to encode the 34 kDa proteinase.
  • Sequence analysis confirmed identity between cDNA and protein peptides, revealing N-glycosylation sites.
  • Expressed protein fragment was recognized by anti-34 kDa antibody.
  • Northern blot showed a 1.75 kb mRNA transcript.
  • Partial homology was found with alpha-chymotrypsin sequences.
  • Maximum mRNA levels were detected during early endospore wall differentiation.

Conclusions:

  • The isolated cDNA encodes the C. immitis 34 kDa serine proteinase.
  • The enzyme is likely involved in cell wall modification, plasticization, or turnover.
  • Proteinase expression is highest during active parasitic cell growth stages.