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Isolation and expression of a gene which encodes a wall-associated proteinase of Coccidioides immitis
Abstract:
A chymotrypsinlike serine proteinase of Coccidioides immitis with an estimated molecular size of 34 kDa has been shown by immunoelectron microscopy to be associated with the walls of the parasitic cells of this human respiratory pathogen. The proteinase has been suggested to play a role in spherule development. We report the isolation of a 1.2-kb cDNA from an expression library of C. immitis constructed in the lambda ZAP II phage vector. The cDNA is suggested to encode the 34-kDa protein. We demonstrate identity between segments of the deduced amino acid sequence of the open reading frame of the 1.2-kb cDNA and three distinct sequences obtained from cyanogen bromide cleavage peptides of the purified proteinase. The occurrence of N-glycosyl linkage sites in the deduced sequence of 309 amino acids of the open reading frame (ORF) correlates with our identification of such linkage sites in the native glycosylated proteinase. A protein encoded by an 800-bp fragment of the 1.2-kb cDNA, which was produced by transformed Escherichia coli XL1-Blue, was recognized by the anti-34-kDa protein antibody in a Western blot (immunoblot). Northern (RNA) hybridization of total poly(A)-containing RNA of C. immitis with the labeled 1.2-kb cDNA clone revealed a single band of approximately 1.75 kb. Partial homology was demonstrated between the deduced amino acid sequence of the ORF (927 bp) and reported sequences of alpha-chymotrypsin and chymotrypsinogens. Expression of the proteinase gene was examined by Northern dot blot analysis of total RNA from different stages of parasitic cell development in C. immitis. Maximum levels of specific mRNA were detected during early endospore wall differentiation. The 34-kDa proteinase appears to be concentrated in walls of the parasitic cells at stages of active growth. We suggest that the enzyme may participate in wall plasticization and/or intussusception or in cell wall turnover.
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.
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