|
|
|
Sample: |
Protein sex-lethal mutant monomer, 20 kDa Drosophila melanogaster protein
RNA decaneucleotide U8GU monomer, 3 kDa synthetic construct RNA
|
Buffer: |
50% dilution of protein buffer {10 mM KP, 50 mM NaCl, 10 mM DTT pH 6} with {milliQ-water pH 7} suspended RNA, pH: 6 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2017 Feb 3
|
A General Small-Angle X-ray Scattering-Based Screening Protocol Validated for Protein-RNA Interactions.
ACS Comb Sci 20(4):197-202 (2018)
Chen PC, Masiewicz P, Rybin V, Svergun D, Hennig J
|
RgGuinier |
2.2 |
nm |
Dmax |
7.8 |
nm |
VolumePorod |
34 |
nm3 |
|
|
|
|
|
Sample: |
Protein sex-lethal mutant dimer, 41 kDa Drosophila melanogaster protein
RNA decaneucleotide UGU8 dimer, 6 kDa synthetic construct RNA
|
Buffer: |
50% dilution of protein buffer {10 mM KP, 50 mM NaCl, 10 mM DTT pH 6} with {milliQ-water pH 7} suspended RNA, pH: 6 |
Experiment: |
SAXS
data collected at BM29, ESRF on 2017 Apr 12
|
A General Small-Angle X-ray Scattering-Based Screening Protocol Validated for Protein-RNA Interactions.
ACS Comb Sci 20(4):197-202 (2018)
Chen PC, Masiewicz P, Rybin V, Svergun D, Hennig J
|
RgGuinier |
2.5 |
nm |
Dmax |
8.9 |
nm |
VolumePorod |
41 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 monomer, 108 kDa Homo sapiens protein
5´ppp 10mer hairpin dsRNA monomer, 8 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 May 29
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
4.1 |
nm |
Dmax |
16.1 |
nm |
VolumePorod |
160 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 monomer, 108 kDa Homo sapiens protein
5´ppp 10mer hairpin dsRNA monomer, 8 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, 0.5 mM AMP-PNP, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 May 28
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
4.2 |
nm |
Dmax |
17.0 |
nm |
VolumePorod |
163 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 monomer, 108 kDa Homo sapiens protein
5´ppp 10mer hairpin dsRNA monomer, 8 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, 2mM ADP-AlFx, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 Nov 20
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
4.0 |
nm |
Dmax |
18.3 |
nm |
VolumePorod |
156 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 monomer, 108 kDa Homo sapiens protein
5´ppp 8mer hairpin dsRNA monomer, 6 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 Nov 20
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
4.3 |
nm |
Dmax |
15.3 |
nm |
VolumePorod |
179 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 monomer, 108 kDa Homo sapiens protein
5´ppp 8mer hairpin dsRNA monomer, 6 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, 0.5 mM AMP-PNP, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2016 Apr 27
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
4.1 |
nm |
Dmax |
15.0 |
nm |
VolumePorod |
188 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 monomer, 108 kDa Homo sapiens protein
5´ppp 8mer hairpin dsRNA monomer, 6 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, 2mM ADP-AlFx, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 Nov 20
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
4.2 |
nm |
Dmax |
16.8 |
nm |
VolumePorod |
178 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 (without CARDs) monomer, 80 kDa Homo sapiens protein
5´ppp 10mer hairpin dsRNA monomer, 8 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 May 29
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
2.8 |
nm |
Dmax |
9.0 |
nm |
VolumePorod |
146 |
nm3 |
|
|
|
|
|
Sample: |
Probable ATP-dependent RNA helicase DDX58 (without CARDs) monomer, 80 kDa Homo sapiens protein
5´ppp 10mer hairpin dsRNA monomer, 8 kDa RNA
|
Buffer: |
25 mM HEPES, 150 mM NaCl, 2.5 mM MgCl2, 10% glycerol and 1mM DTT, 0.5 mM AMP-PNP, pH: 7.4 |
Experiment: |
SAXS
data collected at SAXS/WAXS, Australian Synchrotron on 2015 May 29
|
Combined roles of ATP and small hairpin RNA in the activation of RIG-I revealed by solution-based analysis.
Nucleic Acids Res 46(6):3169-3186 (2018)
Shah N, Beckham SA, Wilce JA, Wilce MCJ
|
RgGuinier |
2.8 |
nm |
Dmax |
9.0 |
nm |
VolumePorod |
135 |
nm3 |
|
|