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Cryptosporidium parvum: functional complementation of a parasite transcriptional coactivator CpMBF1 in yeast
1Wadsworth Center, New York State Department of Health, Albany, New York 12201-2002, USA. gzhu@cvm.tamu.edu
Abstract:
We report here the identification of a novel multiprotein bridging factor type 1 from the apicomplexan Cryptosporidium parvum (CpMBF1), one of the opportunistic pathogens in AIDS patients. In slime molds, insects, and humans, MBF1-regulated systems have been associated with cell differentiation, which indicates that CpMBF1 could be responsible for the activation of similar systems in C. parvum during its complex life cycle. Because of the difficulties and high cost in obtaining sufficient and purified C. parvum material for molecular and biochemical analyses, well-characterized yeast genetic systems may be useful for investigating the functions of C. parvum genes. In this study, the function of CpMBF1 as an interconnecting element between a DNA-binding regulator and TATA-box-binding protein (TBP) was confirmed using a yeast complementation assay. Under conditions of histidine starvation, an MBF1-deficient strain of Saccharomyces cerevisiae was unable to activate the HIS3 gene, which encodes imidazoleglycerol-phosphate dehydratase (IGPDH), and thus became sensitive to 3-amino triazole, an inhibitor of this enzyme. Upon introduction of parasite CpMBF1 into S. cerevisiae, 3-amino triazole resistance of the MBF1-deficient strain was restored to wild-type levels, and Northern blot analysis revealed that CpMBF1 was able to activate HIS3 transcription in response to histidine starvation.
Insights
We identified a novel protein, Cryptosporidium parvum multiprotein bridging factor type 1 (CpMBF1), crucial for gene activation. Yeast complementation assays confirmed CpMBF1
Area of Science:
- Microbiology
- Molecular Biology
- Parasitology
Background:
- Cryptosporidium parvum is an opportunistic pathogen affecting AIDS patients.
- Multiprotein bridging factor 1 (MBF1) regulates cell differentiation in various organisms.
- CpMBF1 is a newly identified MBF1 from C. parvum.
Purpose of the Study:
- To identify and characterize the function of CpMBF1.
- To investigate CpMBF1's role in gene regulation within C. parvum.
- To utilize yeast complementation assays for studying C. parvum genes.
Main Methods:
- Identification of CpMBF1 from C. parvum.
- Yeast complementation assay using an MBF1-deficient Saccharomyces cerevisiae strain.
- Histidine starvation conditions to assess HIS3 gene activation.
- Northern blot analysis to confirm gene transcription.
Main Results:
- CpMBF1 functions as an interconnecting element between DNA-binding regulators and TATA-box-binding protein (TBP).
- Introduction of CpMBF1 restored 3-amino triazole resistance in an MBF1-deficient yeast strain.
- CpMBF1 successfully activated HIS3 gene transcription under histidine starvation.
Conclusions:
- CpMBF1 plays a vital role in regulating gene transcription in C. parvum.
- The function of CpMBF1 is conserved across different species, including yeast.
- Yeast systems provide a viable model for studying C. parvum gene functions.

