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33 hits found for Libera

SASDY63 – human telomeric g-quadruplex (Tel50)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.1 nm

SASDY73 – human telomeric g-quadruplex (Tel26)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDY83 – human telomeric g-quadruplex Tel50+BRACO-19 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDY93 – human telomeric g-quadruplex Tel50+BRACO-19 (1:3)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYA3 – human telomeric g-quadruplex Tel50+BRACO-19 (1:4)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYB3 – human telomeric g-quadruplex Tel50+PhenDC3 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYC3 – human telomeric g-quadruplex Tel50+PhenDC3 (1:3)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYD3 – human telomeric g-quadruplex Tel50+PhenDC3 (1:4)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYE3 – human telomeric G-quadruplex Tel50+RHPS4 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYF3 – human telomeric g-quadruplex Tel50+RHPS4(1:3)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYG3 – human telomeric g-quadruplex Tel50+RHPS4(1:4)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYH3 – human telomeric g-quadruplex Tel50+SYUIQ-5 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 2.0 nm

SASDYJ3 – human telomeric g-quadruplex Tel50+SYUIQ-5 (1:3)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.9 nm

SASDYK3 – human telomeric g-quadruplex Tel50+SYUIQ-5 (1:4)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.9 nm

SASDYL3 – human telomeric g-quadruplex Tel26+BRACO-19 (1:1)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYM3 – human telomeric g-quadruplex Tel26+BRACO-19 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYN3 – human telomeric g-quadruplex Tel26+PhenDC3 (1:1)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYP3 – human telomeric g-quadruplex Tel26+RHPS4 (1:1)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYQ3 – human telomeric g-quadruplex Tel26+PhenDC3 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYR3 – human telomeric g-quadruplex Tel26+RHPS4 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYS3 – human telomeric g-quadruplex Tel26+SYUIQ-5 (1:1)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDYT3 – human telomeric g-quadruplex Tel26+SYUIQ-5 (1:2)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2024 Jul 12
Ligands reshape the compactness, stability, and topology of telomeric G-quadruplex dimers. Nucleic Acids Res 54(8) (2026)
...Libera V, Arciuolo V, Trapella M, Marzano S, Mostarac D, Schirò G, Petrillo C, Giancola C, De Michele C, Amato J, Comez L, Pagano B, Paciaroni A
RgGuinier 1.3 nm

SASDZF4 – human telomeric g-quadruplex Tel50+BRACO-19 (1:2)

human telomeric g-quadruplexhuman telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex , 16 kDa DNA
human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2026 Mar 30
Tel50 + ligands (BR19)
valeria libera
RgGuinier 2.0 nm

SASDKG4 – Malus domestica double bond reductase (MdDBR) apoform

Malus domestica double bond reductase experimental SAS data
PDB (PROTEIN DATA BANK) model
Sample: Malus domestica double bond reductase dimer, 77 kDa Malus domestica protein
Buffer: 50 mM Tris-HCl, 100 mM NaCl., pH: 7.5
Experiment: SAXS data collected at Anton Paar SAXSpoint 2.0, Institute of Biotechnology, Czech Academy of Sciences/Centre of Molecular Structure on 2020 Oct 23
The structural and functional characterization of Malus domestica double bond reductase MdDBR provides insights towards the identification of its substrates International Journal of Biological Macromolecules 171:89-99 (2021)
Caliandro R, Polsinelli I, Demitri N, Musiani F, Martens S, Benini S
RgGuinier 3.0 nm
Dmax 9.9 nm
VolumePorod 110 nm3

SASDZG4 – human telomeric g-quadruplex Tel50+BRACO-19 (1:3)

human telomeric g-quadruplex experimental SAS data
human telomeric g-quadruplex Kratky plot
Sample: human telomeric g-quadruplex monomer, 8 kDa DNA
Buffer: 5 mM KH2PO4/K2HPO4, pH: 7
Experiment: SAXS data collected at BM29, ESRF on 2026 Mar 30
Tel50 + ligands (BR19)
valeria libera
RgGuinier 2.0 nm

SASDKH4 – Malus domestica double bond reductase in the presence of NADPH 5mM

Malus domestica double bond reductase experimental SAS data
PYMOL model
Sample: Malus domestica double bond reductase dimer, 77 kDa Malus domestica protein
Buffer: 50 mM Tris-HCl, 100 mM NaCl, 5 mM NADPH, pH: 7.5
Experiment: SAXS data collected at Anton Paar SAXSpoint 2.0, Institute of Biotechnology, Czech Academy of Sciences/Centre of Molecular Structure on 2020 Oct 23
The structural and functional characterization of Malus domestica double bond reductase MdDBR provides insights towards the identification of its substrates International Journal of Biological Macromolecules 171:89-99 (2021)
Caliandro R, Polsinelli I, Demitri N, Musiani F, Martens S, Benini S
RgGuinier 3.1 nm
Dmax 10.7 nm
VolumePorod 99 nm3

SASDAF7 – Metal-bound hETHE1

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
PDB (PROTEIN DATA BANK) model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2007 Oct 21
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 2.5 nm
Dmax 7.5 nm
VolumePorod 70 nm3

SASDAH7 – Metal-free hETHE1, 0.5 mg/ml

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
DAMMIN model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2009 Nov 23
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 9.0 nm
Dmax 32.3 nm
VolumePorod 400 nm3

SASDAJ7 – Metal-free hETHE1, 1 mg/ml

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
DAMMIN model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2009 Nov 23
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 8.3 nm
Dmax 38.0 nm
VolumePorod 602 nm3

SASDAK7 – Metal-free hETHE1, 2 mg/ml

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
DAMMIN model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2009 Nov 23
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 8.8 nm
Dmax 42.5 nm
VolumePorod 647 nm3

SASDAL7 – Metal-free hETHE1, 3 mg/ml

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
DAMMIN model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2009 Nov 23
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 11.2 nm
Dmax 56.0 nm
VolumePorod 1445 nm3

SASDAM7 – Metal-free hETHE1, 5 mg/ml

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
DAMMIN model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2009 Nov 23
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 12.4 nm
Dmax 59.0 nm
VolumePorod 1820 nm3

SASDAN7 – Metal-free hETHE1, 10 mg/ml

Persulfide dioxygenase ETHE1, mitochondrial experimental SAS data
DAMMIN model
Sample: Persulfide dioxygenase ETHE1, mitochondrial dimer, 56 kDa Homo sapiens protein
Buffer: 50 mM Tris 150 mM NaCl 2 mM TCEP, pH: 8
Experiment: SAXS data collected at EMBL X33, DORIS III, DESY on 2009 Nov 23
Distinctive features and structural significance of the Homo sapiens ethylmalonic encephalopathy protein iron binding site
Al Kikhney, Marco Salomone-Stagni
RgGuinier 14.2 nm
Dmax 63.5 nm
VolumePorod 2317 nm3