Related Experiment Videos
Preliminary profile of the Cryptosporidium parvum genome: an expressed sequence tag and genome survey sequence
1Division of Infectious Diseases, San Francisco General Hospital, San Francisco, CA, USA.
Abstract:
Cryptosporidium parvum is a protozoan enteropathogen that infects humans and animals and causes a pronounced diarrheal disease that can be life-threatening in immunocompromised hosts. No specific chemo- or immunotherapies exist to treat cryptosporidiosis and little molecular information is available to guide development of such therapies. To accelerate gene discovery and identify genes encoding potential drug and vaccine targets we constructed sporozoite cDNA and genomic DNA sequencing libraries from the Iowa isolate of C. parvum and determined approximately 2000 sequence tags by single-pass sequencing of random clones. Together, the 567 expressed sequence tags (ESTs) and 1507 genome survey sequences (GSSs) totaled one megabase (1 mb) of unique genomic sequence indicating that approximately 10% of the 10.4 mb C. parvum genome has been sequence tagged in this gene discovery expedition. The tags were used to search the public nucleic acid and protein databases via BLAST analyses, and 180 ESTs (32%) and 277 GSSs (18%) exhibited similarity with database sequences at smallest sum probabilities P(N)< or =10(-8). Some tags encoded proteins with clear therapeutic potential including S-adenosylhomocysteine hydrolase, histone deacetylase, polyketide/fatty-acid synthases, various cyclophilins, thrombospondin-related cysteine-rich protein and ATP-binding-cassette transporters. Several anonymous ESTs encoded proteins predicted to contain signal peptides or multiple transmembrane spanning segments suggesting they were destined for membrane-bound compartments, the cell surface or extracellular secretion. One-hundred four simple sequence repeats were identified within the nonredundant sequence tag collection with (TAA)(> or =6)/(TTA)(> or =6) and (TA)(> or = 10)/(AT)(> or =10 ) being the most prevalent, occurring 40 and 15 times, respectively. Various cellular RNAs and their genes were also identified including the small and large ribosomal RNAs, five tRNAs, the U2 small nuclear RNA, and the small and large virus-like, double-stranded RNAs. This investigation has demonstrated that survey sequencing is an efficient procedure for gene discovery and genome characterization and has identified and sequence tagged many C. parvum genes encoding potential therapeutic targets.
Insights
This study sequenced the Cryptosporidium parvum genome, identifying over 2000 gene tags. These tags revealed potential drug and vaccine targets for treating cryptosporidiosis, a severe diarrheal disease.
Area of Science:
- * Parasitology
- * Molecular Biology
- * Genomics
Background:
- * Cryptosporidium parvum causes severe diarrheal disease, particularly in immunocompromised individuals.
- * Current treatments for cryptosporidiosis are limited, and molecular targets for therapies are poorly understood.
Purpose of the Study:
- * To accelerate gene discovery in C. parvum.
- * To identify potential drug and vaccine targets for cryptosporidiosis treatment.
- * To characterize the C. parvum genome through survey sequencing.
Main Methods:
- * Construction of sporozoite cDNA and genomic DNA sequencing libraries from the Iowa isolate of C. parvum.
- * Single-pass sequencing of random clones to generate expressed sequence tags (ESTs) and genome survey sequences (GSSs).
- * BLAST analysis of sequence tags against public databases to identify homologous genes and proteins.
Main Results:
- * Approximately 2000 sequence tags (567 ESTs, 1507 GSSs) representing 1 Mb of unique C. parvum genomic sequence were generated.
- * 180 ESTs (32%) and 277 GSSs (18%) showed significant similarity to known database sequences.
- * Identified genes encoding potential therapeutic targets, including S-adenosylhomocysteine hydrolase, histone deacetylase, and ATP-binding-cassette transporters.
- * Discovered various cellular RNAs and identified 104 simple sequence repeats.
Conclusions:
- * Survey sequencing is an efficient method for gene discovery and genome characterization in C. parvum.
- * The study identified numerous C. parvum genes with potential as therapeutic targets for cryptosporidiosis.
- * This research provides a foundation for developing novel chemo- and immunotherapies against C. parvum infections.