Complementary hydrophobic interaction of the redox enzyme maturation protein NarJ with the signal peptide of the respiratory nitrate reductase NarG.

Int J Biol Macromol

Institute of Bioscience and Biotechnology, Kangwon National University, Chuncheon 24341, Republic of Korea; Division of Biomedical Convergence, College of Biomedical Science, Kangwon National University, Chuncheon 24341, Republic of Korea. Electronic address:

Published: March 2024

AI Article Synopsis

  • NarJ is crucial for assembling the nitrate reductase NarGHI in bacteria by interacting with the NarG signal peptide to help incorporate cofactors.
  • Our research focused on understanding how NarJ recognizes the NarG signal peptide, using techniques like X-ray crystallography and molecular dynamics simulations.
  • NarJ has a unique structure with a curved α-helix and a hydrophobic groove that binds to the NarG signal peptide, leading to structural changes that stabilize the interaction between the two proteins.

Article Abstract

In bacteria, NarJ plays an essential role as a redox enzyme maturation protein in the assembly of the nitrate reductase NarGHI by interacting with the N-terminal signal peptide of NarG to facilitate cofactor incorporation into NarG. The purpose of our research was to elucidate the exact mechanism of NarG signal peptide recognition by NarJ. We determined the structures of NarJ alone and in complex with the signal peptide of NarG via X-ray crystallography and verified the NarJ-NarG interaction through mutational, binding, and molecular dynamics simulation studies. NarJ adopts a curved α-helix bundle structure with a U-shaped hydrophobic groove on its concave side. This groove accommodates the signal peptide of NarG via a dual binding mode in which the left and right parts of the NarJ groove each interact with two consecutive hydrophobic residues from the N- and C-terminal regions of the NarG signal peptide, respectively, through shape and chemical complementarity. This binding is accompanied by unwinding of the helical structure of the NarG signal peptide and by stabilization of the NarG-binding loop of NarJ. We conclude that NarJ recognizes the NarG signal peptide through a complementary hydrophobic interaction mechanism that mediates a structural rearrangement.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.129620DOI Listing

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