Genetic Suppressors of mrp-5 Lethality in C. elegans


Autoria(s): Beardsley, Simon
Contribuinte(s)

Hamza, Iqbal

Digital Repository at the University of Maryland

University of Maryland (College Park, Md.)

Animal Sciences

Data(s)

22/06/2016

22/06/2016

2016

Resumo

Heme is an essential cofactor in numerous proteins, but is also cytotoxic. Thus, directed pathways must exist for regulating heme homeostasis. C. elegans is a powerful genetic animal model for elucidating these pathways because it is a heme auxotroph. Worms acquire dietary heme though HRG-1-related importers, and intestinal export was demonstrated to be mediated by the ABC transporter MRP-5. Loss of mrp-5 results in embryonic lethality. Although heme transporters have been identified, there are significant gaps in our understanding for the heme trafficking beyond HRG-1 and MRP-5. To identify additional components, we conducted a forward genetic screen utilizing the null allele mrp-5(ok2067). Screening of 160,000 haploid genomes yielded thirty-two mrp-5(ok2067) suppressor mutants. Deep-sequencing variant analysis revealed three of the suppressors subunits of adapter protein complex 3 (AP-3). We now seek to identify mechanisms for how adaptor protein deficiencies bypass a defect in MRP-5-mediated heme export.

Identificador

doi:10.13016/M26R4M

http://hdl.handle.net/1903/18437

Idioma(s)

en

Palavras-Chave #Genetics #Molecular biology #Biology #c. elegans #heme #micronutrient trafficking #mrp-5 #suppressor
Tipo

Thesis