Stub1 promotes degradation of the activated Diaph3: a negative feedback regulatory mechanism of the actin nucleator

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  • 作者: Cui Qiu, Linqing Zhang, Chenxuan Yong, Ruixing Hu, Yuecen Sun, Busong Wang, Lei Fang, Guang-Jie Zhu, Qing Lu, Junguo Wang, Xiaofeng Ma, Luping Zhang, Guoqiang Wan
  • 杂志: Journal of Biological Chemistry
  • Doi: https://www.doi.org/10.1016/j.jbc.2024.107813
  • 出版日期: 2024 Sep 23

论文中使用的产品/服务

Quotation shows PackGene:Sticky ends for subcloning were generated by restriction enzymes EcoRI and AgeI. mStub1-shRNA (AAV2/i.e., 1 × 1013 genomic copies per mL) were made by PackGene Biotech.

Research Field:Auditory neuropathy

AAV Serotype:AAV2

Targeted organ:cochlear tissue

Animal or cell line strain:mice

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摘要

The formin protein Diaph3 is an actin nucleator that regulates numerous cytoskeleton-dependent cellular processes through the activation of actin polymerization. Expression and activity of Diaph3 is tightly regulated: lack of Diaph3 results in developmental defects and embryonic lethality in mice, while overexpression of Diaph3 causes auditory neuropathy. It is known that Diaph3 homophilic interactions include the intramolecular interaction of its Dia-inhibitory domain (DID)-diaphanous autoregulatory domain (DAD) domains and the intermolecular interactions of DD-DD domains or FH2-FH2 domains. However, the physiological significance of these interactions in Diaph3 protein stability and activity is not fully understood. In this study, we show that FH2-FH2 interaction promotes Diaph3 activity, while DID-DAD and DD-DD interactions inhibit Diaph3 activity through distinct mechanisms. DID-DAD interaction is responsible for the autoinhibition of Diaph3 protein, which is disrupted by binding of Rho GTPases. Interestingly, we find that DID-DAD interaction stabilizes the expression of each DID or DAD domain against proteasomal-mediated degradation. Disruption of DID-DAD interaction by RhoA binding or M1041A mutation causes increased Diaph3 activity and accelerated degradation of the activated Diaph3 protein. Further, the activated Diaph3 is ubiquitinated at K1142/1143/1144 lysine residues by the E3 ligase Stub1. Expression of Stub1 is causally related to the stability and activity of Diaph3. Knockdown of Stub1 in mouse cochlea results in hair cell stereocilia defects, neuronal degeneration, and hearing loss, resembling the phenotypes of mice overexpressing Diaph3. Thus, our study reports a novel regulatory mechanism of Diaph3 protein expression and activity whereby the active but not inactive Diaph3 is readily degraded to prevent excessive actin polymerization.

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