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Published on: May 28, 2021
Differential Gene Expression and Protein Localization of Cryptosporidium parvum Fatty Acyl-CoA Synthetase Isoforms
Fengguang Guo1, Haili Zhang1, Harold Ross Payne1
1Department of Veterinary Pathobiology, College of Veterinary Medicine & Biomedical Sciences, Texas A&M University, College Station, Texas.
Abstract:
Cryptosporidium parvum is unable to synthesize fatty acids de novo, but possesses three long-chain fatty acyl-CoA synthetase (CpACS) isoforms for activating fatty acids. We have recently shown that these enzymes could be targeted to kill the parasite in vitro and in vivo. Here, we demonstrated that the CpACS genes were differentially expressed during the parasite life cycle, and their proteins were localized to different subcellular structures by immunofluorescence and immuno-electron microscopies. Among them, CpACS1 displayed as an apical protein in sporozoites and merozoites, but no or little presence during the intracellular merogony until the release of merozoites, suggesting that CpACS1 probably functioned mainly during the parasite invasion and/or early stage of intracellular development. Both CpACS2 and CpACS3 proteins were present in all parasite life cycle stages, in which CpACS2 was present in the parasite and the parasitophorous vacuole membranes (PVM), whereas CpACS3 was mainly present in the parasite plasma membranes with little presence in the PVM. These observations suggest that CpACS2 and CpACS3 may participate in scavenging and transport of fatty acids across the PVM and the parasite cytoplasmic membranes, respectively.
Insights
Cryptosporidium parvum fatty acid activation enzymes (CpACS) show distinct life cycle expression and subcellular localization. Targeting these CpACS enzymes offers a potential strategy against this parasitic infection.
Area of Science:
- Parasitology
- Molecular Biology
- Biochemistry
Background:
- Cryptosporidium parvum lacks de novo fatty acid synthesis.
- It relies on fatty acid activation via three long-chain fatty acyl-CoA synthetase (CpACS) isoforms.
- CpACS enzymes are potential drug targets.
Purpose of the Study:
- To investigate the differential gene expression of CpACS isoforms during the parasite life cycle.
- To determine the subcellular localization of CpACS proteins.
- To understand the functional roles of CpACS isoforms in parasite biology.
Main Methods:
- Analysis of CpACS gene expression across parasite life stages.
- Immunofluorescence microscopy for protein localization.
- Immuno-electron microscopy for high-resolution subcellular localization.
Main Results:
- CpACS genes exhibit differential expression patterns.
- CpACS1 localizes apically in sporozoites/merozoites, suggesting roles in invasion.
- CpACS2 and CpACS3 localize to the parasite and membranes (PVM/plasma), indicating roles in fatty acid scavenging and transport.
Conclusions:
- CpACS isoforms have distinct expression and localization profiles.
- CpACS1 is likely involved in early infection stages.
- CpACS2 and CpACS3 facilitate fatty acid uptake and transport across membranes.

