Hypertension-causing Mutations in Cullin3 Protein Impair RhoA Protein Ubiquitination and Augment the Association with Substrate Adaptors

Cullin-Ring ubiquitin ligases regulate protein turnover by promoting the ubiquitination of substrate proteins, targeting them for proteasomal degradation. It has been shown previously that mutations in Cullin3 (Cul3) causing deletion of 57 amino acids encoded by exon 9 (Cul3Δ9) cause hypertension. M...

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Veröffentlicht in:The Journal of biological chemistry 2015-07, Vol.290 (31), p.19208-19217
Hauptverfasser: Ibeawuchi, Stella-Rita C., Agbor, Larry N., Quelle, Frederick W., Sigmund, Curt D.
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Sprache:eng
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Zusammenfassung:Cullin-Ring ubiquitin ligases regulate protein turnover by promoting the ubiquitination of substrate proteins, targeting them for proteasomal degradation. It has been shown previously that mutations in Cullin3 (Cul3) causing deletion of 57 amino acids encoded by exon 9 (Cul3Δ9) cause hypertension. Moreover, RhoA activity contributes to vascular constriction and hypertension. We show that ubiquitination and degradation of RhoA is dependent on Cul3 in HEK293T cells in which Cul3 expression is ablated by either siRNA or by CRISPR-Cas9 genome editing. The latter was used to generate a Cul3-null cell line (HEK293TCul3KO). When expressed in these cells, Cul3Δ9 supported reduced ubiquitin ligase activity toward RhoA compared with equivalent levels of wild-type Cul3 (Cul3WT). Consistent with its reduced activity, binding of Cul3Δ9 to the E3 ubiquitin ligase Rbx1 and neddylation of Cul3Δ9 were impaired significantly compared with Cul3WT. Conversely, Cul3Δ9 bound to substrate adaptor proteins more efficiently than Cul3WT. Cul3Δ9 also forms unstable dimers with Cul3WT, disrupting dimers of Cul3WT complexes that are required for efficient ubiquitination of some substrates. Indeed, coexpression of Cul3WT and Cul3Δ9 in HEK293TCul3KO cells resulted in a decrease in the active form of Cul3WT. We conclude that Cul3Δ9-associated ubiquitin ligase activity toward RhoA is impaired and suggest that Cul3Δ9 mutations may act dominantly by sequestering substrate adaptors and disrupting Cul3WT complexes. Cullin3 ubiquitin ligase regulates protein turnover by promoting the ubiquitination of substrates. Ubiquitination of RhoA is impaired by mutations in Cullin3. Disease-causing Cullin3 mutations impair the turnover of RhoA protein and may sequester substrates adaptors. Mutations in Cullin3 cause reduced ubiquitination and elevation of RhoA levels, which may enhance RhoA and Rho kinase signaling in a variety of cell types and could potentially contribute to hypertension.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M115.645358