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Complement Membrane Attack Complexes Disrupt Proteostasis to Function as Intracellular Alarmins.
Jane-Wit, Dan; Song, Guiyu; He, Liying; Jiang, Quan; Barkestani, Mahsa; Wang, Shaoxun; Wang, Qianxun; Ren, Pengwei; Fan, Matthew; Johnson, Justin; Mullan, Clancy.
Afiliação
  • Jane-Wit D; Yale University.
  • Song G; Yale School of Medicine.
  • He L; Yale University.
  • Jiang Q; Yale University.
  • Barkestani M; Yale University.
  • Wang S; Yale University.
  • Wang Q; Yale University.
  • Ren P; Yale University School of Medicine.
  • Fan M; Yale University School of Medicine.
  • Johnson J; Yale University School of Medicine.
  • Mullan C; Yale School of Medicine.
Res Sq ; 2024 Jun 19.
Article em En | MEDLINE | ID: mdl-38947095
ABSTRACT
Internalized pools of membrane attack complexes (MACs) promote NF-kB and dysregulated tissue inflammation. Here, we show that C9, a MAC-associated protein, promotes loss of proteostasis to become intrinsically immunogenic. Surface-bound C9 is internalized into Rab5 + endosomes whose intraluminal acidification promotes C9 aggregates. A region within the MACPF/CDC domain of C9 stimulates aggrephagy to induce NF-kB, inflammatory genes, and EC activation. This process requires ZFYVE21, a Rab5 effector, which links LC3A/B on aggresome membranes to RNF34-P62 complexes to mediate C9 aggrephagy. C9 aggregates form in human tissues, C9-associated signaling responses occur in three mouse models, and ZFYVE21 stabilizes RNF34 to promote C9 aggrephagy in vivo. Gene-deficient mice lacking ZFYVE21 in ECs showed reduced MAC-induced tissue injury in a skin model of chronic rejection. While classically defined as cytotoxic effectors, MACs may impair proteostasis, forming aggregates that behave as intracellular alarmins.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article