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Unveiling the Role of Sorghum RPAP3 in the Function of R2TP Complex: Insights into Protein Assembly in Plants.
Antonio, Larissa Machado; Martins, Gustavo Henrique; Aragão, Annelize Zambon Barbosa; Quel, Natália Galdi; Zazeri, Gabriel; Houry, Walid A; Ramos, Carlos Henrique Inacio.
Afiliação
  • Antonio LM; Institute of Chemistry, University of Campinas-UNICAMP, Campinas 13100-104, SP, Brazil.
  • Martins GH; Institute of Chemistry, University of Campinas-UNICAMP, Campinas 13100-104, SP, Brazil.
  • Aragão AZB; Institute of Chemistry, University of Campinas-UNICAMP, Campinas 13100-104, SP, Brazil.
  • Quel NG; Institute of Chemistry, University of Campinas-UNICAMP, Campinas 13100-104, SP, Brazil.
  • Zazeri G; Institute of Chemistry, University of Campinas-UNICAMP, Campinas 13100-104, SP, Brazil.
  • Houry WA; Department of Biochemistry, University of Toronto, Toronto, ON M5G 1M1, Canada.
  • Ramos CHI; Department of Chemistry, University of Toronto, Toronto, ON M5S 3H6, Canada.
Plants (Basel) ; 12(16)2023 Aug 12.
Article em En | MEDLINE | ID: mdl-37631136
ABSTRACT
The chaperone R2TP has multiple subunits that assist in the proper folding, assembly, and stabilization of various protein complexes in cells and its study can offer valuable insights into the regulation and maintenance of protein assemblies in plant systems. The 'T' component of R2TP is Tah1 in yeast, consisting of 111 residues, while its counterpart in humans is RPAP3, with 665 residues. RPAP3 acts as a co-chaperone of Hsp90 and facilitates interactions between RUVBL proteins and other complex components, enhancing the recruitment of client proteins by the R2TP complex. These facts further underscore the relevance of studying this complex in different organisms. The putative gene corresponding to the RPAP3 in Sorghum bicolor, a monocotyledon plant, was cloned, and the protein (396 residues) purified for biochemical characterization. SbRPAP3 exists as a folded monomer and has a RPAP3 domain, which is present in human RPAP3 but absent in yeast Tah1. SbRPAP3 retains its functional capabilities, including binding with RUVBLs, Hsp90, and Hsp70. By elucidating the role of RPAP3 in plant R2TP complex, we can further comprehend the molecular mechanisms underlying plant-specific protein assembly and contribute to advancements in plant biology and biotechnological applications.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Plants (Basel) Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Brasil

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Plants (Basel) Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Brasil