Polymorphic Self‐Assembly with Procedural Flexibility for Monodisperse Quaternary Protein Structures of DegQ Enzymes

Abstract: As large molecular tertiary structures, some proteins can act as small robots that find, bind, and chaperone target protein clients, showing the potential to serve as smart building blocks in self‐assembly fields. Instead of using such intrinsic functions, most self‐assembly methodologies for proteins aim for de novo‐designed structures with accurate geometric assemblies, which can limit procedural flexibility. Here, a strategy enabling polymorphic clustering of quaternary proteins, exhibiting simplicity and flexibility of self‐assembling paths for proteins in forming monodisperse quaternary cage particles is presented. It is proposed that the enzyme protomer DegQ, previously solved at low resolution, may potentially be usable as a threefold symmetric building block, which can form polyhedral cages incorporated by the chaperone action of DegQ in the presence of protein clients. To obtain highly monodisperse cage particles, soft, and hence, less resistive client proteins, which can program the inherent chaperone activity of DegQ to efficient formations of polymorphic cages, depending on the size of clients are utilized. By reconstructing the atomic resolution cryogenic electron microscopy DegQ structures using obtained 12‐ and 24‐meric clusters, the polymorphic clustering of DegQ enzymes is validated in terms of soft and rigid domains, which will provide effective routes for protein self‐assemblies with procedural flexibility.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Polymorphic Self‐Assembly with Procedural Flexibility for Monodisperse Quaternary Protein Structures of DegQ Enzymes ; day:28 ; month:02 ; year:2024 ; extent:10
Advanced materials ; (28.02.2024) (gesamt 10)

Creator
Jeon, Hanul
Han, Ah‐reum
Oh, Sangmin
Park, Jin‐Gyeong
Namkoong, Myeong
Bang, Kyeong‐Mi
Kim, Ho Min
Kim, Nak‐Kyoon
Hwang, Kwang Yeon
Hur, Kahyun
Lee, Bong‐Jin
Heo, Jeongyun
Kim, Sehoon
Song, Hyun Kyu
Cho, Hyesung
Lee, In‐Gyun

DOI
10.1002/adma.202308837
URN
urn:nbn:de:101:1-2024022914175528200340
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 10:51 AM CEST

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Associated

  • Jeon, Hanul
  • Han, Ah‐reum
  • Oh, Sangmin
  • Park, Jin‐Gyeong
  • Namkoong, Myeong
  • Bang, Kyeong‐Mi
  • Kim, Ho Min
  • Kim, Nak‐Kyoon
  • Hwang, Kwang Yeon
  • Hur, Kahyun
  • Lee, Bong‐Jin
  • Heo, Jeongyun
  • Kim, Sehoon
  • Song, Hyun Kyu
  • Cho, Hyesung
  • Lee, In‐Gyun

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