| Literature DB >> 22514736 |
Jianbin Ruan1, Hui Ouyang, Maria F Amaya, Mani Ravichandran, Peter Loppnau, Jinrong Min, Jianye Zang.
Abstract
BACKGROUND: HP1 proteins are highly conserved heterochromatin proteins, which have been identified to be structural adapters assembling a variety of macromolecular complexes involved in regulation of gene expression, chromatin remodeling and heterochromatin formation. Much evidence shows that HP1 proteins interact with numerous proteins including methylated histones, histone methyltransferases and so on. Cbx3 is one of the paralogues of HP1 proteins, which has been reported to specifically recognize trimethylated histone H3K9 mark, and a consensus binding motif has been defined for the Cbx3 chromodomain. METHODOLOGY/PRINCIPALEntities:
Mesh:
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Year: 2012 PMID: 22514736 PMCID: PMC3325965 DOI: 10.1371/journal.pone.0035376
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Peptide binding specificity of human Cbx3 chromodomain.
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| Peptide sequence | unmodified | me1 | me2 | me3 | |
| H1.4(18–29) | TPVKKKARK26SAG | N/B | N/B | 52 | 21 |
| G9a(179–190) | KVHRARK185TMSKP | N/B | 28 | 9.0 | 14 |
N/B: No binding was detected.
Figure 1Human Cbx3 chromodomain binds to methylated histone H1K26 and G9aK185.
ITC data for Cbx3 chromodomain binding to (A) H1K26 peptides (residues 18–29) and (B) G9aK185 peptides (residues 179–190). Lower panel show fit to a one-site binding model to the binding isotherms.
X-ray Data collection and refinement statistics.
| PDB Code | 3TZD | 3DM1 |
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| Crystals | Cbx3-H1K26me2 | Cbx3-G9aK185me3 |
| Space group |
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| Cell dimensions | ||
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| 92.2, 92.2, 92.2 | 83.7, 83.7, 110.3 |
| α, β, γ (°) | 90, 90, 90 | 90, 90, 120 |
| Wavelength (Å) | 1.5418 | 1.2827 |
| Resolution (Å) | 40.00-1.81(1.86-1.80) | 40.00 – 2.40(2.49 – 2.40) |
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| 8.6(51.2) | 8.8(83.6) |
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| 13.9(7.6) | 15.1(4.4) |
| Completeness (%) | 98.3(82.7) | 99.9(100.0) |
| Redundancy | 20.7(19.6) | 10.5(10.4) |
| No. unique reflections | 12066 | 18022 |
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| Resolution (Å) | 40.00-1.81 | 39.10 – 2.40 |
| No. reflections | 11,460 | 17,856 |
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| 19.9/23.1 | 22.0/26.7 |
| No. atoms | ||
| Protein | 1,225 | 2,019 |
| Water | 19 | 91 |
| Average B-factors (Å2) | ||
| Protein | 18.8 | 43.3 |
| Water | 24.8 | 44.5 |
| R.m.s. deviations | ||
| Bond lengths (Å) | 0.019 | 0.021 |
| Bond angles (°) | 1.629 | 1.826 |
| Ramachandran plot | 95.0 | 94.2 |
| Most favored regions (%) | 5.0 | 5.8 |
| Additionally allowed regions (%) Outliers (%) | 0.0 | 0.0 |
The values in parentheses refer to statistics in the highest shell.
Rmerge = |Ii−|/|Ii| where Ii is the intensity of the ith measurement, and is the mean intensity for that reflection.
Rwork = Σh|Fo(h)−Fc(h)|/ΣhFo(h), where Fo and Fc are the observed and calculated structure factor amplitudes, respectively.
Rfree was calculated with 10% of the reflections in the test set.
Categories were defined by MolProbity.
Figure 2Structure basis for Cbx3 binding to methylated histone H1K26 and G9aK185 peptide.
(A and C) Electrostatic surface depiction of human Cbx3-histone H1K26me2, and Cbx3-G9aK185me3 complex. Peptide substrates are shown in a stick mode. Surfaces with positive electrostatic potential are blue, and negative potential are red. The side chain of residue H1A24 (G9aA183) inserts into the small hydrophobic pocket formed by Phe48 and Leu49 of human Cbx3. The size of the pocket is only sufficient to accommodate a methyl group but not other residue side chains. (B and D) Binding of histone H1 peptide and G9a peptide in the binding groove of Cbx3 chromodomain, respectively. Hydrogen-bonds are shown as dashed lines. Yellow: histone H1 peptide; Gray: Cbx3 chromodomain in Cbx3-histone H1K26me2 complex. Cyan: G9a peptide; Green: Cbx3 chromodomain in Cbx3-G9aK185me3 complex.
Figure 3Comparison of three structures of Cbx3 chromodomain binding to methylated histone H3, H1 and G9a peptides.
(A) Superposition of human Cbx3 chromodomain in complex with methylated histone H1 peptide (yellow), histone H3 peptide (orange), G9a peptide (cyan), Cbx3 chromodomains are colored as magenta, gray and green, respectively. (B) Superposition of histone H1 peptide (yellow), histone H3 peptide (orange). (C) Structure of Cbx3-H3K9me3 complex (magenta) was superposed to one protomer of the tetramer of Cbx3-G9aK185me3 complex (green) formed in one asymmetric unit. (D) The α helix (residues 70 to 79) of the chromodomain in the structure of Cbx3-G9aK185me3 complex (green) shifts 4.9 Å away from its counterpart in the structures of Cbx3-H3K9me3 (magenta).