Neddylation and CAND1 Independently Stimulate SCF Ubiquitin Ligase Activity in Candida albicans

Author:

Sela Nadine1,Atir-Lande Avigail1,Kornitzer Daniel1

Affiliation:

1. Department of Molecular Microbiology, B. Rappaport Faculty of Medicine, Technion—IIT, and the Rappaport Institute for Research in the Medical Sciences, Haifa, Israel

Abstract

ABSTRACT SCF (Skp1–cullin/Cdc53–F-box protein) ubiquitin ligases bind substrates via the variable F-box protein and, in conjunction with the RING domain protein Rbx1 and the ubiquitin-conjugating enzyme Ubc3/Cdc34, catalyze substrate ubiquitination. The cullin subunit can be modified covalently by conjugation of the ubiquitin-like protein Rub1/NEDD8 (neddylation) or bound noncovalently by the protein CAND1 (cullin-associated, neddylation-dissociated). Expression of the Candida albicans CAND1 gene homolog Ca TIP120 in Saccharomyces cerevisiae is toxic only in the presence of CaCdc53, consistent with a specific interaction between CaTip120 and CaCdc53. To genetically analyze this system in C. albicans , we deleted the homologs of RUB1 /NEDD8, TIP120 /CAND1, and the deneddylase gene JAB1 , and we also generated a temperature-sensitive allele of the essential Ca CDC53 gene by knock-in site-directed mutagenesis. Deletion of Ca RUB1 and Ca TIP120 caused morphological, growth, and protein degradation phenotypes consistent with a reduction in SCF ubiquitin ligase activity. Furthermore, the double Ca rub1 −/− Ca tip120 −/− mutant was more defective in SCF activity than either individual deletion mutant. These results indicate that CAND1 stimulates SCF ubiquitin ligase activity and that it does so independently of neddylation. Our data do not support a role for CAND1 in the protection of either the F-box protein or cullin from degradation but are consistent with the suggested role of CAND1 in SCF complex remodeling.

Publisher

American Society for Microbiology

Subject

Molecular Biology,General Medicine,Microbiology

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