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Cullin 3 Exon 9 Deletion in Familial Hyperkalemic Hypertension Impairs Cullin3-Ring-E3 Ligase (CRL3) Dynamic Regulation and Cycling.
Kouranti, Ilektra; Abdel Khalek, Waed; Mazurkiewicz, Stephani; Loisel-Ferreira, Irmine; Gautreau, Alexis M; Pintard, Lionel; Jeunemaitre, Xavier; Clauser, Eric.
Affiliation
  • Kouranti I; Université Paris Cité, French National Institute of Health and Medical Research (INSERM), Paris Cardiovascular Research Center (PARCC), F-75015 Paris, France.
  • Abdel Khalek W; Université Paris Cité, French National Institute of Health and Medical Research (INSERM), Paris Cardiovascular Research Center (PARCC), F-75015 Paris, France.
  • Mazurkiewicz S; Université Paris Cité, French National Institute of Health and Medical Research (INSERM), Paris Cardiovascular Research Center (PARCC), F-75015 Paris, France.
  • Loisel-Ferreira I; Université Paris Cité, French National Institute of Health and Medical Research (INSERM), Paris Cardiovascular Research Center (PARCC), F-75015 Paris, France.
  • Gautreau AM; Laboratory of Structural Biology of the Cell, Ecole Polytechnique, Institut Polytechnique de Paris, 91120 Palaiseau, France.
  • Pintard L; Center of Molecular and Cellular Biology (CMCB), Skolkovo Institute of Science and Technology (Skoltech), 12105 Moscow, Russia.
  • Jeunemaitre X; French National Centre for Scientific Research (CNRS), Institut Jacques Monod, Université Paris Cité, F-75013 Paris, France.
  • Clauser E; Université Paris Cité, French National Institute of Health and Medical Research (INSERM), Paris Cardiovascular Research Center (PARCC), F-75015 Paris, France.
Int J Mol Sci ; 23(9)2022 May 05.
Article in En | MEDLINE | ID: mdl-35563538
ABSTRACT
Cullin 3 (CUL3) is the scaffold of Cullin3 Ring E3-ligases (CRL3s), which use various BTB-adaptor proteins to ubiquitinate numerous substrates targeting their proteasomal degradation. CUL3 mutations, responsible for a severe form of familial hyperkalemia and hypertension (FHHt), all result in a deletion of exon 9 (amino-acids 403-459) (CUL3-∆9). Surprisingly, while CUL3-∆9 is hyperneddylated, a post-translational modification that typically activates CRL complexes, it is unable to ubiquitinate its substrates. In order to understand the mechanisms behind this loss-of function, we performed comparative label-free quantitative analyses of CUL3 and CUL3-∆9 interactome by mass spectrometry. It was observed that CUL3-∆9 interactions with COP9 and CAND1, both involved in CRL3 complexes' dynamic assembly, were disrupted. These defects result in a reduction in the dynamic cycling of the CRL3 complexes, making the CRL3-∆9 complex an inactive BTB-adaptor trap, as demonstrated by SILAC experiments. Collectively, the data indicated that the hyperneddylated CUL3-∆9 protein is inactive as a consequence of several structural changes disrupting its dynamic interactions with key regulatory partners.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Pseudohypoaldosteronism / Cullin Proteins / Hypertension Limits: Female / Humans / Male Language: En Journal: Int J Mol Sci Year: 2022 Document type: Article Affiliation country: France

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Pseudohypoaldosteronism / Cullin Proteins / Hypertension Limits: Female / Humans / Male Language: En Journal: Int J Mol Sci Year: 2022 Document type: Article Affiliation country: France