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Inducible Knockdown of Plasmodium Gene Expression Using the glmS Ribozyme
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Metadata
Document Title
Inducible Knockdown of Plasmodium Gene Expression Using the glmS Ribozyme
Author
Prommana P, Uthaipibull C, Wongsombat C, Kamchonwongpaisan S, Yuthavong Y, Knuepfer E, Holder AA, Shaw PJ
Name from Authors Collection
Scopus Author ID
52364480000
Affiliations
National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); MRC National Institute for Medical Research
Type
Article
Source Title
PLOS ONE
ISSN
1932-6203
Year
2013
Volume
8
Issue
3
Open Access
Green Published, gold, Green Submitted
Publisher
PUBLIC LIBRARY SCIENCE
DOI
10.1371/journal.pone.0073783
Format
Abstract
Conventional reverse genetic approaches for study of Plasmodium malaria parasite gene function are limited, or not applicable. Hence, new inducible systems are needed. Here we describe a method to control P. falciparum gene expression in which target genes bearing a glmS ribozyme in the 3' untranslated region are efficiently knocked down in transgenic P. falciparum parasites in response to glucosamine inducer. Using reporter genes, we show that the glmS ribozyme cleaves reporter mRNA in vivo leading to reduction in mRNA expression following glucosamine treatment. Glucosamine-induced ribozyme activation led to efficient reduction of reporter protein, which could be rapidly reversed by removing the inducer. The glmS ribozyme was validated as a reverse-genetic tool by integration into the essential gene and antifolate drug target dihydrofolate reductase-thymidylate synthase (PfDHFR-TS). Glucosamine treatment of transgenic parasites led to rapid and efficient knockdown of PfDHFR-TS mRNA and protein. PfDHFR-TS knockdown led to a growth/arrest mutant phenotype and hypersensitivity to pyrimethamine. The glmS ribozyme may thus be a tool for study of essential genes in P. falciparum and other parasite species amenable to transfection.
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
Funding Sponsor
Bill and Melinda Gates Foundation through the Grand Challenges Explorations Initiative round 4 [1007041]; CPM/NSTDA [P-11-00673, P-00-20388, P-10-10506, P-09-00707, P-12-01270]; HHMI International Scholar program; UK MRC [U117532067]; EU FP7 Network of Excellence, EviMalar [242095]; MRC [MC_U117532067] Funding Source: UKRI; Medical Research Council [MC_U117532067] Funding Source: researchfish
License
CC BY
Rights
Authors
Publication Source
WOS