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Published on: November 10, 2015
Emerging polymorphisms in falciparum Kelch 13 gene in Northeastern region of India
Neelima Mishra1, Ram Suresh Bharti1, Prashant Mallick1
1National Institute of Malaria Research, Sector 8, Dwarka, New Delhi, 110 077, India.
Background:
Recent reports of emergence and spread of artemisinin resistance in the Southeast Asia region, including Myanmar, pose a greater threat to malaria control and elimination in India. Whole genome sequencing studies have associated mutations in the K13 propeller gene (k13), PF3D7_1343700 with artemisinin resistance both in vitro and in vivo. The aim of the present study was to find the k13 gene polymorphisms in Plasmodium falciparum parasites from the three sites in the Northeast region of India, bordering Bangladesh and Myanmar.
Methods:
A total of 254 samples collected during 2014-2015 from Tripura, Mizoram and Arunachal Pradesh states in the Northeast region of India were used to obtain the full-length k13 gene sequences.
Results:
Three non-synonymous (NS) mutations: two in the propeller region, namely at codon 446 and 578, were observed besides one at codon 189 in the non-propeller region. The treatment outcome was not affected by these mutations at any of the sites. In addition, microsatellite variation in the N-terminus of the k13 protein was observed at all the study sites.
Conclusion:
This is the first study to document the presence of F446I NS mutation in the k13 propeller region from Changlang district, Arunachal Pradesh, a site adjoining the Indo-Myanmar border region, where this mutation is highly prevalent. In addition, NS mutation A578S has been observed only at Lunglei district, Mizoram, a site bordering Bangladesh and K189T mutation with relatively higher frequency in Mizoram and Tripura states. The presence of F446I mutation in a region close to the Myanmar border is notable. Considering the spread of anti-malarial drug resistance from Southeast Asia to the Northeast region of India in the past, there is an urgent need to undertake systematic mapping studies to ascertain the role and extent of this mutation in artemisinin resistance in this region of country.
Insights
Artemisinin resistance in malaria parasites is a growing concern in India. This study identified key K13 gene mutations in Plasmodium falciparum from Northeast India, highlighting the need for monitoring drug resistance.
Area of Science:
- Molecular parasitology
- Antimalarial drug resistance
- Genomic epidemiology
Background:
- Emerging artemisinin resistance in Southeast Asia threatens malaria elimination efforts in India.
- Mutations in the K13 propeller gene (k13) are linked to artemisinin resistance.
- Investigating k13 gene polymorphisms in Plasmodium falciparum is crucial for understanding resistance dynamics.
Purpose of the Study:
- To identify k13 gene polymorphisms in Plasmodium falciparum parasites from Northeast India.
- To assess the prevalence of specific k13 mutations in border regions of India, Bangladesh, and Myanmar.
Main Methods:
- Full-length k13 gene sequences were obtained from 254 Plasmodium falciparum samples.
- Samples were collected from Tripura, Mizoram, and Arunachal Pradesh between 2014-2015.
- Analysis focused on identifying non-synonymous mutations and microsatellite variations.
Main Results:
- Three non-synonymous mutations were identified: F446I, A578S, and K189T.
- F446I was found in Arunachal Pradesh near the Myanmar border, A578S in Mizoram bordering Bangladesh, and K189T was more frequent in Mizoram and Tripura.
- Microsatellite variations were observed in the N-terminus of the k13 protein across all sites.
Conclusions:
- This study is the first to report the F446I mutation in the k13 propeller region in Arunachal Pradesh, near the Indo-Myanmar border.
- The presence of these mutations, particularly F446I near the Myanmar border, is significant given past resistance spread.
- Urgent systematic mapping studies are needed to determine the role and extent of k13 mutations in artemisinin resistance in Northeast India.
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