6mcu Citations

Engineering the hCRBPII Domain-Swapped Dimer into a New Class of Protein Switches.

Abstract

Protein conformational switches or allosteric proteins play a key role in the regulation of many essential biological pathways. Nonetheless, the implementation of protein conformational switches in protein design applications has proven challenging, with only a few known examples that are not derivatives of naturally occurring allosteric systems. We have discovered that the domain-swapped (DS) dimer of hCRBPII undergoes a large and robust conformational change upon retinal binding, making it a potentially powerful template for the design of protein conformational switches. Atomic resolution structures of the apo- and holo-forms illuminate a simple, mechanical movement involving sterically driven torsion angle flipping of two residues that drive the motion. We further demonstrate that the conformational "readout" can be altered by addition of cross-domain disulfide bonds, also visualized at atomic resolution. Finally, as a proof of principle, we have created an allosteric metal binding site in the DS dimer, where ligand binding results in a reversible 5-fold loss of metal binding affinity. The high resolution structure of the metal-bound variant illustrates a well-formed metal binding site at the interface of the two domains of the DS dimer and confirms the design strategy for allosteric regulation.

Articles - 6mcu mentioned but not cited (1)

  1. Engineering the hCRBPII Domain-Swapped Dimer into a New Class of Protein Switches. Ghanbarpour A, Pinger C, Esmatpour Salmani R, Assar Z, Santos EM, Nosrati M, Pawlowski K, Spence D, Vasileiou C, Jin X, Borhan B, Geiger JH. J Am Chem Soc 141 17125-17132 (2019)


Reviews citing this publication (1)

  1. Protein Assembly by Design. Zhu J, Avakyan N, Kakkis A, Hoffnagle AM, Han K, Li Y, Zhang Z, Choi TS, Na Y, Yu CJ, Tezcan FA. Chem Rev 121 13701-13796 (2021)

Articles citing this publication (5)

  1. Design of Large Stokes Shift Fluorescent Proteins Based on Excited State Proton Transfer of an Engineered Photobase. Santos EM, Sheng W, Esmatpour Salmani R, Tahmasebi Nick S, Ghanbarpour A, Gholami H, Vasileiou C, Geiger JH, Borhan B. J Am Chem Soc 143 15091-15102 (2021)
  2. A novel 3D-printed centrifugal ultrafiltration method reveals in vivo glycation of human serum albumin decreases its binding affinity for zinc. Jacobs MJ, Pinger CW, Castiaux AD, Maloney KJ, Spence DM. Metallomics 12 1036-1043 (2020)
  3. Human Cellular Retinol Binding Protein II Forms a Domain-Swapped Trimer Representing a Novel Fold and a New Template for Protein Engineering. Ghanbarpour A, Santos EM, Pinger C, Assar Z, Hossaini Nasr S, Vasileiou C, Spence D, Borhan B, Geiger JH. Chembiochem 21 3192-3196 (2020)
  4. Orthogonal Activation of Metabotropic Glutamate Receptor Using Coordination Chemogenetics. Senoo A, Yamada Y, Ojima K, Doura T, Hamachi I, Kiyonaka S. Front Chem 9 825669 (2021)
  5. Redox- and metal-directed structural diversification in designed metalloprotein assemblies. Kakkis A, Golub E, Choi TS, Tezcan FA. Chem Commun (Camb) 58 6958-6961 (2022)