Literature DB >> 28487481

Functional genomics in Brugia malayi reveal diverse muscle nAChRs and differences between cholinergic anthelmintics.

Saurabh Verma1, Sudhanva Srinivas Kashyap1, Alan Patrick Robertson1, Richard John Martin2.   

Abstract

Many techniques for studying functional genomics of important target sites of anthelmintics have been restricted to Caenorhabditis elegans because they have failed when applied to animal parasites. To overcome these limitations, we have focused our research on the human nematode parasite Brugia malayi, which causes elephantiasis. Here, we combine single-cell PCR, whole muscle cell patch clamp, motility phenotyping (Worminator), and dsRNA for RNAi for functional genomic studies that have revealed, in vivo, four different muscle nAChRs (M-, L-, P-, and N-). The cholinergic anthelmintics had different selectivities for these receptors. We show that motility and patch-clamp responses to levamisole and pyrantel, but not morantel or nicotine, require the unc-38 and/or unc-29 genes. Derquantel behaved as a competitive antagonist and distinguished M-nAChRs activated by morantel (Kb 13.9 nM), P-nAChRs activated by pyrantel (Kb 126 nM), and L-nAChRs activated by levamisole (Kb 0.96 µM) and bephenium. Derquantel was a noncompetitive antagonist of nicotine, revealing N-type nAChRs. The presence of four diverse nAChRs on muscle is perhaps surprising and not predicted from the C. elegans model. The diverse nAChRs represent distinguishable drug targets with different functions: Knockdown of unc-38+unc-29 (L- and/or P-receptors) inhibited motility but knockdown of acr-16+acr-26 (M- and/or N-receptors) did not.

Entities:  

Keywords:  Brugia; dsRNA; filaria; nAChR; patch clamp

Mesh:

Substances:

Year:  2017        PMID: 28487481      PMCID: PMC5448196          DOI: 10.1073/pnas.1619820114

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  57 in total

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Journal:  FASEB J       Date:  2008-06-02       Impact factor: 5.191

6.  Levamisole-activated single-channel currents from muscle of the nematode parasite Ascaris suum.

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7.  Curiouser and Curiouser: The Macrocyclic Lactone, Abamectin, Is also a Potent Inhibitor of Pyrantel/Tribendimidine Nicotinic Acetylcholine Receptors of Gastro-Intestinal Worms.

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5.  Cholinergic receptors on intestine cells of Ascaris suum and activation of nAChRs by levamisole.

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8.  Anthelmintic resistance and homeostatic plasticity (Brugia malayi).

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