Interactions of C. elegans -tubulins with the microtubule inhibitor albendazole
Mains, P. E.; Pallotto, L. M.; Dilks, C. M.; Park, Y.-J.; Smit, R. B.; Lu, B.; Gopalakrishnan, C.; Gilleard, J. S.; Andersen, E. C.
Show abstract
Parasitic nematodes are major human and agricultural pests, and benzimidazoles are amongst the most important broad spectrum anthelmintic drug class used for their control. Benzimidazole resistance is now widespread in many species of parasitic nematodes in livestock globally and an emerging concern for the sustainable control of human soil transmitted helminths. {beta}-tubulin is the major benzimidazole target, although other genes may influence resistance. Among the six C. elegans {beta}-tubulin genes, loss of ben-1 causes resistance without other apparent defects. Here, we explored the genetics of C. elegans {beta}-tubulin genes in relation to the response to the benzimidazole derivative albendazole. The most highly expressed {beta}-tubulin isotypes, encoded by tbb-1 and tbb-2, were known to be redundant with each other for viability, and their products are predicted not to bind benzimidazoles. We found that tbb-2 mutants, and to a lesser extent tbb-1 mutants, were hypersensitive to albendazole. The double mutant tbb-2 ben-1 is uncoordinated and dumpy, resembling the wild type exposed to albendazole, but the tbb-1 ben-1 double mutant did not show the same phenotype. These results suggest that tbb-2 is a modifier of ABZ sensitivity. To better understand how BEN-1 mutates to cause benzimidazole resistance, we isolated mutants resistant to albendazole and found that 15 of 16 mutations occurred in ben-1. Mutations ranged from likely nulls to hypomorphs, and several corresponded to residues that cause resistance in other organisms. Null alleles of ben-1 are albendazole-resistant and BEN-1 shows high sequence identity with tubulins from other organisms, suggesting that many amino acid changes could cause resistance. However, our results suggest that missense mutations conferring resistance are not evenly distributed across all possible conserved sites. Independent of their roles in benzimidazole resistance, tbb-1 and tbb-2 may have specialized functions as null mutants of tbb-1 or tbb-2 were cold or heat sensitive, respectively.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- An engineered, orthogonal auxin analog/AtTIR1(F79G) pairing improves both specificity and efficacy of the auxin degradation system in Caenorhabditis elegans 95%
- Neuronal KGB-1 JNK MAPK signaling regulates the dauer developmental decision in response to environmental stress in C. elegans 94%
- Insights into the involvement of spliceosomal mutations in myelodysplastic disorders from an analysis of SACY-1/DDX41 in Caenorhabditis elegans 94%
Similar papers in this journal
- A single locus underlies variation in Caenorhabditis elegans chemotherapeutic responses 96%
- A C. elegans genome-wide RNAi screen for altered levamisole sensitivity identifies genes required for muscle function 95%
- Identification of essential genes in Caenorhabditis elegans through whole genome sequencing of legacy mutant collections 95%
Similar papers in this journal
- Precise Lineage Tracking Using Molecular Barcodes Demonstrates Fitness Trade-offs for Ivermectin Resistance in Nematodes 95%
- A targeted genetic modifier screen in Drosophila uncovers vulnerabilities in a genetically complex model of colon cancer 94%
- A temporal sequence of heterochronic gene activities promotes stage-specific developmental events in C. elegans 93%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.