|
|
|
Sample: |
Human Guanylate-binding protein 1 dimer, 138 kDa Homo sapiens protein
|
Buffer: |
50 mM Tris-HCl, 5 mM MgCl2, 150 mM NaCl, 0.2 mM GppNHp, pH: 7.9 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2017 Apr 30
|
Farnesylation of human guanylate binding protein 1 as safety mechanism preventing structural rearrangements and uninduced dimerization.
FEBS J (2019)
Lorenz C, Ince S, Zhang T, Cousin A, Batra-Safferling R, Nagel-Steger L, Herrmann C, Stadler AM
|
RgGuinier |
5.5 |
nm |
Dmax |
22.0 |
nm |
VolumePorod |
270 |
nm3 |
|
|
|
|
|
Sample: |
Human Guanylate-binding protein 1 monomer, 69 kDa Homo sapiens protein
|
Buffer: |
50 mM Tris-HCl, 5 mM MgCl2, 150 mM NaCl, 0.2 mM GppNHp, pH: 7.9 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2017 Apr 30
|
Farnesylation of human guanylate binding protein 1 as safety mechanism preventing structural rearrangements and uninduced dimerization.
FEBS J (2019)
Lorenz C, Ince S, Zhang T, Cousin A, Batra-Safferling R, Nagel-Steger L, Herrmann C, Stadler AM
|
RgGuinier |
4.5 |
nm |
Dmax |
20.5 |
nm |
VolumePorod |
120 |
nm3 |
|
|
|
|
|
Sample: |
Human Guanylate-binding protein 1 dimer, 138 kDa Homo sapiens protein
|
Buffer: |
50 mM Tris-HCl, 5 mM MgCl2, 150 mM NaCl, pH: 7.9 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2017 Apr 30
|
Farnesylation of human guanylate binding protein 1 as safety mechanism preventing structural rearrangements and uninduced dimerization.
FEBS J (2019)
Lorenz C, Ince S, Zhang T, Cousin A, Batra-Safferling R, Nagel-Steger L, Herrmann C, Stadler AM
|
RgGuinier |
4.8 |
nm |
Dmax |
15.6 |
nm |
VolumePorod |
211 |
nm3 |
|
|
|
|
|
Sample: |
Farnesylated human Guanylate-binding protein 1 monomer, 69 kDa Homo sapiens protein
|
Buffer: |
50 mM Tris-HCl, 5 mM MgCl2, 150 mM NaCl, pH: 7.9 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2016 May 8
|
Farnesylation of human guanylate binding protein 1 as safety mechanism preventing structural rearrangements and uninduced dimerization.
FEBS J (2019)
Lorenz C, Ince S, Zhang T, Cousin A, Batra-Safferling R, Nagel-Steger L, Herrmann C, Stadler AM
|
RgGuinier |
3.8 |
nm |
Dmax |
14.3 |
nm |
VolumePorod |
102 |
nm3 |
|
|
|
|
|
Sample: |
Human Guanylate-binding protein 1 monomer, 69 kDa Homo sapiens protein
|
Buffer: |
50 mM Tris-HCl, 5 mM MgCl2, 150 mM NaCl, pH: 7.9 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2016 May 8
|
Farnesylation of human guanylate binding protein 1 as safety mechanism preventing structural rearrangements and uninduced dimerization.
FEBS J (2019)
Lorenz C, Ince S, Zhang T, Cousin A, Batra-Safferling R, Nagel-Steger L, Herrmann C, Stadler AM
|
RgGuinier |
5.1 |
nm |
Dmax |
27.4 |
nm |
VolumePorod |
162 |
nm3 |
|
|
|
|
|
Sample: |
Human Guanylate-binding protein 1 monomer, 69 kDa Homo sapiens protein
|
Buffer: |
50 mM Tris-HCl, 5 mM MgCl2, 150 mM NaCl, 0.2 mM GppNHp, pH: 7.9 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2016 May 8
|
Farnesylation of human guanylate binding protein 1 as safety mechanism preventing structural rearrangements and uninduced dimerization.
FEBS J (2019)
Lorenz C, Ince S, Zhang T, Cousin A, Batra-Safferling R, Nagel-Steger L, Herrmann C, Stadler AM
|
RgGuinier |
5.5 |
nm |
Dmax |
27.0 |
nm |
VolumePorod |
186 |
nm3 |
|
|
|
|
|
Sample: |
Bromodomain-containing protein 2 monomer, 43 kDa Homo sapiens protein
|
Buffer: |
25 mM HEPES, 150 mM NaCl, and 2% glycerol, pH: 7.5 |
Experiment: |
SAXS
data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2018 Sep 25
|
Multivalent nucleosome scaffolding by bromodomain and extraterminal domain tandem bromodomains.
J Biol Chem :108289 (2025)
Olp MD, Bursch KL, Wynia-Smith SL, Nuñez R, Goetz CJ, Jackson V, Smith BC
|
RgGuinier |
5.2 |
nm |
Dmax |
18.3 |
nm |
VolumePorod |
100 |
nm3 |
|
|
|
|
|
Sample: |
Bromodomain-containing protein 2 monomer, 43 kDa Homo sapiens protein
|
Buffer: |
25 mM HEPES, 150 mM NaCl, and 2% glycerol, pH: 7.5 |
Experiment: |
SAXS
data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2018 Sep 25
|
Multivalent nucleosome scaffolding by bromodomain and extraterminal domain tandem bromodomains.
J Biol Chem :108289 (2025)
Olp MD, Bursch KL, Wynia-Smith SL, Nuñez R, Goetz CJ, Jackson V, Smith BC
|
RgGuinier |
4.9 |
nm |
Dmax |
18.5 |
nm |
VolumePorod |
100 |
nm3 |
|
|
|
|
|
Sample: |
Bromodomain-containing protein 2 monomer, 43 kDa Homo sapiens protein
|
Buffer: |
25 mM HEPES, 150 mM NaCl, and 2% glycerol, pH: 7.5 |
Experiment: |
SAXS
data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2018 Sep 25
|
Multivalent nucleosome scaffolding by bromodomain and extraterminal domain tandem bromodomains.
J Biol Chem :108289 (2025)
Olp MD, Bursch KL, Wynia-Smith SL, Nuñez R, Goetz CJ, Jackson V, Smith BC
|
RgGuinier |
4.6 |
nm |
Dmax |
17.0 |
nm |
VolumePorod |
100 |
nm3 |
|
|
|
|
|
Sample: |
Bromodomain-containing protein 2 monomer, 43 kDa Homo sapiens protein
|
Buffer: |
25 mM HEPES, 150 mM NaCl, and 2% glycerol, pH: 7.5 |
Experiment: |
SAXS
data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2018 Sep 25
|
Multivalent nucleosome scaffolding by bromodomain and extraterminal domain tandem bromodomains.
J Biol Chem :108289 (2025)
Olp MD, Bursch KL, Wynia-Smith SL, Nuñez R, Goetz CJ, Jackson V, Smith BC
|
RgGuinier |
4.7 |
nm |
Dmax |
18.8 |
nm |
VolumePorod |
80 |
nm3 |
|
|