5omx Citations

Site-Specific Disulfide Crosslinked Nucleosomes with Enhanced Stability.

J Mol Biol 430 45-57 (2018)
Related entries: 5ong, 5onw

Cited: 8 times
EuropePMC logo PMID: 29113904

Abstract

We engineered nucleosome core particles (NCPs) with two site-specific cysteine crosslinks that increase the stability of the particle. The first disulfide was introduced between the two copies of H2A via an H2A-N38C point mutation, effectively crosslinking the two H2A/H2B heterodimers together to stabilize the histone octamer against H2A/H2B dimer dissociation. The second crosslink was engineered between an R40C point mutation on the N-terminal tail of H3 and the NCP DNA ends by the introduction of a convertible nucleotide. This crosslink maintains the nucleosome DNA in a fixed translational setting relative to the histone octamer and prevents dilution-driven dissociation. The X-ray crystal structures of NCPs containing the disulfides in isolation and in combination were determined. Both disulfides stabilize the structure of the NCP without disturbing the overall structure. Nucleosomes containing these modifications will be advantageous for biochemical and structural studies as a consequence of their greater resistance to dissociation during high dilution in purification, elevated salt for crystallization and vitrification for cryogenic electron microscopy.

Articles - 5omx mentioned but not cited (2)

  1. Automated cryo-EM structure refinement using correlation-driven molecular dynamics. Igaev M, Kutzner C, Bock LV, Vaiana AC, Grubmüller H. Elife 8 e43542 (2019)
  2. Site-Specific Disulfide Crosslinked Nucleosomes with Enhanced Stability. Frouws TD, Barth PD, Richmond TJ. J Mol Biol 430 45-57 (2018)


Articles citing this publication (6)

  1. Bend-Induced Twist Waves and the Structure of Nucleosomal DNA. Skoruppa E, Nomidis SK, Marko JF, Carlon E. Phys Rev Lett 121 088101 (2018)
  2. Letter Single-molecule nucleosome remodeling by INO80 and effects of histone tails. Schwarz M, Schall K, Kallis E, Eustermann S, Guariento M, Moldt M, Hopfner KP, Michaelis J. FEBS Lett 592 318-331 (2018)
  3. VivosX, a disulfide crosslinking method to capture site-specific, protein-protein interactions in yeast and human cells. Mohan C, Kim LM, Hollar N, Li T, Paulissen E, Leung CT, Luk E. Elife 7 e36654 (2018)
  4. Expressed Protein Ligation without Intein. Qiao Y, Yu G, Kratch KC, Wang XA, Wang WW, Leeuwon SZ, Xu S, Morse JS, Liu WR. J Am Chem Soc 142 7047-7054 (2020)
  5. Reorientation of INO80 on hexasomes reveals basis for mechanistic versatility. Wu H, Muñoz EN, Hsieh LJ, Chio US, Gourdet MA, Narlikar GJ, Cheng Y. Science 381 319-324 (2023)
  6. Molecular engineering strategies for visualizing low-affinity protein complexes. Ming Q, Gonzalez-Perez D, Luca VC. Exp Biol Med (Maywood) 244 1559-1567 (2019)