x
Filter:
Filters applied
- Protein Structure and Folding
- Loppnau, PeterRemove Loppnau, Peter filter
- Lei, MingRemove Lei, Ming filter
Publication Date
Please choose a date range between 2017 and 2018.
Protein Structure and Folding
2 Results
- Protein Structure and FoldingOpen Access
Structural basis for the ability of MBD domains to bind methyl-CG and TG sites in DNA
Journal of Biological ChemistryVol. 293Issue 19p7344–7354Published online: March 22, 2018- Ke Liu
- Chao Xu
- Ming Lei
- Ally Yang
- Peter Loppnau
- Timothy R. Hughes
- and others
Cited in Scopus: 39Cytosine methylation is a well-characterized epigenetic mark and occurs at both CG and non-CG sites in DNA. Both methylated CG (mCG)- and mCH (H = A, C, or T)-containing DNAs, especially mCAC-containing DNAs, are recognized by methyl-CpG–binding protein 2 (MeCP2) to regulate gene expression in neuron development. However, the molecular mechanism involved in the binding of methyl-CpG–binding domain (MBD) of MeCP2 to these different DNA motifs is unclear. Here, we systematically characterized the DNA-binding selectivities of the MBD domains in MeCP2 and MBD1–4 with isothermal titration calorimetry–based binding assays, mutagenesis studies, and X-ray crystallography. - Protein Structure and FoldingOpen Access
Peptide recognition by heterochromatin protein 1 (HP1) chromoshadow domains revisited: Plasticity in the pseudosymmetric histone binding site of human HP1
Journal of Biological ChemistryVol. 292Issue 14p5655–5664Published online: February 21, 2017- Yanli Liu
- Su Qin
- Ming Lei
- Wolfram Tempel
- Yuzhe Zhang
- Peter Loppnau
- and others
Cited in Scopus: 13Heterochromatin protein 1 (HP1), a highly conserved non-histone chromosomal protein in eukaryotes, plays important roles in the regulation of gene transcription. Each of the three human homologs of HP1 includes a chromoshadow domain (CSD). The CSD interacts with various proteins bearing the PXVXL motif but also with a region of histone H3 that bears the similar PXXVXL motif. The latter interaction has not yet been resolved in atomic detail. Here we demonstrate that the CSDs of all three human HP1 homologs have comparable affinities to the PXXVXL motif of histone H3.