|
|
|
|
|
| Sample: |
AIR-3A G18U tetramer, 25 kDa RNA
|
| Buffer: |
water, pH: 7.5 |
| Experiment: |
SAXS
data collected at EMBL P12, PETRA III on 2013 Dec 6
|
Structure and target interaction of a G-quadruplex RNA-aptamer.
RNA Biol 13(10):973-987 (2016)
Szameit K, Berg K, Kruspe S, Valentini E, Magbanua E, Kwiatkowski M, Chauvot de Beauchêne I, Krichel B, Schamoni K, Uetrecht C, Svergun DI, Schlüter H, Zacharias M, Hahn U
|
| RgGuinier |
2.5 |
nm |
| Dmax |
8.3 |
nm |
| VolumePorod |
24 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Aureochrome 1a bZIP-LOV module dimer, 57 kDa Phaeodactylum tricornutum protein
|
| Buffer: |
10 mM Tris 300 mM NaCl, pH: 8 |
| Experiment: |
SAXS
data collected at BM29, ESRF on 2014 Nov 6
|
Allosteric communication between DNA-binding and light-responsive domains of diatom class I aureochromes.
Nucleic Acids Res 44(12):5957-70 (2016)
Banerjee A, Herman E, Serif M, Maestre-Reyna M, Hepp S, Pokorny R, Kroth PG, Essen LO, Kottke T
|
| RgGuinier |
3.9 |
nm |
| Dmax |
12.5 |
nm |
| VolumePorod |
121 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Aureochrome 1a bZIP-LOV module dimer, 57 kDa Phaeodactylum tricornutum protein
|
| Buffer: |
10 mM Tris 300 mM NaCl, pH: 8 |
| Experiment: |
SAXS
data collected at BM29, ESRF on 2014 Nov 6
|
Allosteric communication between DNA-binding and light-responsive domains of diatom class I aureochromes.
Nucleic Acids Res 44(12):5957-70 (2016)
Banerjee A, Herman E, Serif M, Maestre-Reyna M, Hepp S, Pokorny R, Kroth PG, Essen LO, Kottke T
|
| RgGuinier |
3.8 |
nm |
| Dmax |
12.5 |
nm |
| VolumePorod |
117 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
CDNA FLJ45612 fis, clone BRTHA3025073, highly similar to Actin cross-linking family protein 7 monomer, 46 kDa Homo sapiens protein
|
| Buffer: |
PBS, pH: 7.4 |
| Experiment: |
SAXS
data collected at 12-ID-B SAXS/WAXS, Advanced Photon Source (APS), Argonne National Laboratory on 2014 Nov 10
|
In vivo epidermal migration requires focal adhesion targeting of ACF7.
Nat Commun 7:11692 (2016)
Yue J, Zhang Y, Liang WG, Gou X, Lee P, Liu H, Lyu W, Tang WJ, Chen SY, Yang F, Liang H, Wu X
|
| RgGuinier |
3.4 |
nm |
| Dmax |
13.5 |
nm |
| VolumePorod |
53 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
CDNA FLJ45612 fis, clone BRTHA3025073, highly similar to Actin cross-linking family protein 7 Y259D mutant monomer, 46 kDa Homo sapiens protein
|
| Buffer: |
PBS, pH: 7.4 |
| Experiment: |
SAXS
data collected at 12-ID-B SAXS/WAXS, Advanced Photon Source (APS), Argonne National Laboratory on 2014 Nov 7
|
In vivo epidermal migration requires focal adhesion targeting of ACF7.
Nat Commun 7:11692 (2016)
Yue J, Zhang Y, Liang WG, Gou X, Lee P, Liu H, Lyu W, Tang WJ, Chen SY, Yang F, Liang H, Wu X
|
| RgGuinier |
3.4 |
nm |
| Dmax |
13.5 |
nm |
| VolumePorod |
55 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Ankyrin repeat domains from Tankyrase 2 monomer, 18 kDa Homo sapiens protein
|
| Buffer: |
50 mM HEPES 100mM NaCl 1mM TCEP, pH: 7.5 |
| Experiment: |
SAXS
data collected at SWING, SOLEIL on 2014 Dec 4
|
Hybrid Structural Analysis of the Arp2/3 Regulator Arpin Identifies Its Acidic Tail as a Primary Binding Epitope.
Structure 24(2):252-60 (2016)
Fetics S, Thureau A, Campanacci V, Aumont-Nicaise M, Dang I, Gautreau A, Pérez J, Cherfils J
|
| RgGuinier |
1.8 |
nm |
| Dmax |
6.3 |
nm |
| VolumePorod |
24 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Human Arpin monomer, 25 kDa Homo sapiens protein
|
| Buffer: |
50 mM HEPES 100mM NaCl 1mM TCEP, pH: 7.5 |
| Experiment: |
SAXS
data collected at SWING, SOLEIL on 2014 Dec 4
|
Hybrid Structural Analysis of the Arp2/3 Regulator Arpin Identifies Its Acidic Tail as a Primary Binding Epitope.
Structure 24(2):252-60 (2016)
Fetics S, Thureau A, Campanacci V, Aumont-Nicaise M, Dang I, Gautreau A, Pérez J, Cherfils J
|
| RgGuinier |
2.6 |
nm |
| Dmax |
13.2 |
nm |
| VolumePorod |
47 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Zebrafish (Danio rerio) Arpin monomer, 25 kDa Danio rerio protein
|
| Buffer: |
50 mM HEPES 100mM NaCl 1mM TCEP, pH: 7.5 |
| Experiment: |
SAXS
data collected at SWING, SOLEIL on 2014 Dec 4
|
Hybrid Structural Analysis of the Arp2/3 Regulator Arpin Identifies Its Acidic Tail as a Primary Binding Epitope.
Structure 24(2):252-60 (2016)
Fetics S, Thureau A, Campanacci V, Aumont-Nicaise M, Dang I, Gautreau A, Pérez J, Cherfils J
|
| RgGuinier |
2.7 |
nm |
| Dmax |
13.8 |
nm |
| VolumePorod |
47 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Zebrafish (Danio rerio) Arpin truncated C-terminal mutant (delta-C 16). monomer, 24 kDa Danio rerio protein
|
| Buffer: |
50 mM HEPES 100mM NaCl 1mM TCEP, pH: 7.5 |
| Experiment: |
SAXS
data collected at SWING, SOLEIL on 2014 Dec 4
|
Hybrid Structural Analysis of the Arp2/3 Regulator Arpin Identifies Its Acidic Tail as a Primary Binding Epitope.
Structure 24(2):252-60 (2016)
Fetics S, Thureau A, Campanacci V, Aumont-Nicaise M, Dang I, Gautreau A, Pérez J, Cherfils J
|
| RgGuinier |
2.2 |
nm |
| Dmax |
11.3 |
nm |
| VolumePorod |
37 |
nm3 |
|
|
|
|
|
|
|
| Sample: |
Zebrafish arpin/human tankyrase 2 ankyrin repeat domain complex monomer, 43 kDa Danio rerio / … protein
|
| Buffer: |
50 mM HEPES 100mM NaCl 1mM TCEP, pH: 7.5 |
| Experiment: |
SAXS
data collected at SWING, SOLEIL on 2014 Dec 4
|
Hybrid Structural Analysis of the Arp2/3 Regulator Arpin Identifies Its Acidic Tail as a Primary Binding Epitope.
Structure 24(2):252-60 (2016)
Fetics S, Thureau A, Campanacci V, Aumont-Nicaise M, Dang I, Gautreau A, Pérez J, Cherfils J
|
| RgGuinier |
3.3 |
nm |
| Dmax |
12.6 |
nm |
| VolumePorod |
58 |
nm3 |
|
|