Browse by MODEL: No model

SASDUE2 – TIP120 mutant K26E in CoreC (C-terminal split fragment of a fusion protein that assembles to Truncated Icosahedral protein composed of TIP60 ) subunit with EDTA

N-terminal split fragment of a single subunit of Truncated Icosahedral Protein composed of 60-mer fusion proteinsK26E mutant of C-terminal split fragment of a single subunit of Truncated Icosahedral Protein composed of 60-mer fusion proteins experimental SAS data
N-terminal split fragment of a single subunit of Truncated Icosahedral Protein composed of 60-mer fusion proteins K26E mutant of C-terminal split fragment of a single subunit of Truncated Icosahedral Protein composed of 60-mer fusion proteins Kratky plot
Sample: N-terminal split fragment of a single subunit of Truncated Icosahedral Protein composed of 60-mer fusion proteins, 360 kDa synthetic construct protein
K26E mutant of C-terminal split fragment of a single subunit of Truncated Icosahedral Protein composed of 60-mer fusion proteins, 857 kDa synthetic construct protein
Buffer: 25 mM HEPES, 100 mM NaCl, 4 mM BaCl2, 32 mM EDTA, 5%(v/v) glycerol, pH: 8
Experiment: SAXS data collected at BL-10C, Photon Factory (PF), High Energy Accelerator Research Organization (KEK) on 2023 Nov 27
Fusion then fission: splitting and reassembly of an artificial fusion-protein nanocage. Chem Commun (Camb) (2024)
Ohara N, Kawakami N, Arai R, Adachi N, Ikeda A, Senda T, Miyamoto K
RgGuinier 4.7 nm
Dmax 13.9 nm
VolumePorod 110 nm3

SASDTS7 – Bovine Lactoferrin

Lactoferrin experimental SAS data
Lactoferrin Kratky plot
Sample: Lactoferrin monomer, 75 kDa Bos taurus protein
Buffer: 20 mM HEPES, 150 mM NaCl, pH: 7.4
Experiment: SAXS data collected at BioCAT 18ID, Advanced Photon Source (APS), Argonne National Laboratory on 2021 Jun 23
A secreted bacterial protein protects bacteria from cationic antimicrobial peptides by entrapment in phase separated droplets PNAS Nexus (2024)
Ostan N, Cole G, Wang F, Reichheld S, Moore G, Pan C, Yu R, Lai C, Sharpe S, Lee H, Schryvers A, Moraes T
RgGuinier 3.2 nm
Dmax 11.5 nm
VolumePorod 117 nm3

SASDTT7 – Lactoferrin binding protein B

Transferrin-binding protein B experimental SAS data
Transferrin-binding protein B Kratky plot
Sample: Transferrin-binding protein B monomer, 97 kDa Moraxella bovis protein
Buffer: 20 mM HEPES, 150 mM NaCl, pH: 7.4
Experiment: SAXS data collected at BioCAT 18ID, Advanced Photon Source (APS), Argonne National Laboratory on 2021 Jun 23
A secreted bacterial protein protects bacteria from cationic antimicrobial peptides by entrapment in phase separated droplets PNAS Nexus (2024)
Ostan N, Cole G, Wang F, Reichheld S, Moore G, Pan C, Yu R, Lai C, Sharpe S, Lee H, Schryvers A, Moraes T
RgGuinier 3.7 nm
Dmax 12.4 nm
VolumePorod 130 nm3

SASDTU7 – Lactoferrin binding protein B (C-terminal alpha helical domain)

Transferrin-binding protein B experimental SAS data
Transferrin-binding protein B Kratky plot
Sample: Transferrin-binding protein B monomer, 32 kDa Moraxella bovis protein
Buffer: 20 mM HEPES, 150 mM NaCl, pH: 7.4
Experiment: SAXS data collected at BioCAT 18ID, Advanced Photon Source (APS), Argonne National Laboratory on 2021 Jun 23
A secreted bacterial protein protects bacteria from cationic antimicrobial peptides by entrapment in phase separated droplets PNAS Nexus (2024)
Ostan N, Cole G, Wang F, Reichheld S, Moore G, Pan C, Yu R, Lai C, Sharpe S, Lee H, Schryvers A, Moraes T
RgGuinier 3.2 nm
Dmax 11.9 nm
VolumePorod 49 nm3

SASDTV7 – Lactoferrin binding protein B (C-terminal alpha helical domain) bound to bovine lactoferrin

LactoferrinTransferrin-binding protein B experimental SAS data
Lactoferrin Transferrin-binding protein B Kratky plot
Sample: Lactoferrin monomer, 75 kDa Bos taurus protein
Transferrin-binding protein B monomer, 32 kDa Moraxella bovis protein
Buffer: 20 mM HEPES, 150 mM NaCl, pH: 7.4
Experiment: SAXS data collected at BioCAT 18ID, Advanced Photon Source (APS), Argonne National Laboratory on 2021 Jun 23
A secreted bacterial protein protects bacteria from cationic antimicrobial peptides by entrapment in phase separated droplets PNAS Nexus (2024)
Ostan N, Cole G, Wang F, Reichheld S, Moore G, Pan C, Yu R, Lai C, Sharpe S, Lee H, Schryvers A, Moraes T
RgGuinier 5.6 nm
Dmax 20.3 nm
VolumePorod 318 nm3

SASDUG3 – Colletotrichum orbiculare Auxiliary Activity Family 9A Lytic Polysaccharide Monooxygenase (AA9A LPMO) monomer

Endoglucanase-7 experimental SAS data
Endoglucanase-7 Kratky plot
Sample: Endoglucanase-7 monomer, 30 kDa Colletotrichum orbiculare (strain … protein
Buffer: 50 mM MES, 150 mM NaCl, pH: 6.5
Experiment: SAXS data collected at SWING, SOLEIL on 2022 Dec 1
The disordered C-terminal tail of fungal LPMOs from phytopathogens mediates protein dimerization and impacts plant penetration. Proc Natl Acad Sci U S A 121(13):e2319998121 (2024)
Tamburrini KC, Kodama S, Grisel S, Haon M, Nishiuchi T, Bissaro B, Kubo Y, Longhi S, Berrin JG
RgGuinier 3.0 nm
Dmax 12.0 nm
VolumePorod 50 nm3

SASDUJ3 – Colletotrichum orbiculare Auxiliary Activity Family 9A Lytic Polysaccharide Monooxygenase (AA9A LPMO) deltaX283

Endoglucanase-7 experimental SAS data
Endoglucanase-7 Kratky plot
Sample: Endoglucanase-7 monomer, 27 kDa Colletotrichum orbiculare (strain … protein
Buffer: 50 mM MES, 150 mM NaCl, pH: 6.5
Experiment: SAXS data collected at BM29, ESRF on 2023 Feb 1
The disordered C-terminal tail of fungal LPMOs from phytopathogens mediates protein dimerization and impacts plant penetration. Proc Natl Acad Sci U S A 121(13):e2319998121 (2024)
Tamburrini KC, Kodama S, Grisel S, Haon M, Nishiuchi T, Bissaro B, Kubo Y, Longhi S, Berrin JG
RgGuinier 1.8 nm
Dmax 6.3 nm
VolumePorod 32 nm3

SASDUK3 – Colletotrichum orbiculare Auxiliary Activity Family 9A Lytic Polysaccharide Monooxygenase (AA9A LPMO) C286A*

Endoglucanase-7 (C286A) experimental SAS data
Endoglucanase-7 (C286A) Kratky plot
Sample: Endoglucanase-7 (C286A) monomer, 30 kDa Colletotrichum orbiculare (strain … protein
Buffer: 50 mM MES, 150 mM NaCl, pH: 6.5
Experiment: SAXS data collected at BM29, ESRF on 2023 Feb 1
The disordered C-terminal tail of fungal LPMOs from phytopathogens mediates protein dimerization and impacts plant penetration. Proc Natl Acad Sci U S A 121(13):e2319998121 (2024)
Tamburrini KC, Kodama S, Grisel S, Haon M, Nishiuchi T, Bissaro B, Kubo Y, Longhi S, Berrin JG
RgGuinier 3.0 nm
Dmax 11.6 nm
VolumePorod 48 nm3

SASDUL3 – Colletotrichum higginsianum Auxiliary Activity Family 9A Lytic Polysaccharide Monooxygenase (AA9A LPMO) monomer

Glycosyl hydrolase family 61 experimental SAS data
Glycosyl hydrolase family 61 Kratky plot
Sample: Glycosyl hydrolase family 61 monomer, 30 kDa Colletotrichum higginsianum (strain … protein
Buffer: 50 mM MES, 150 mM NaCl, pH: 6.5
Experiment: SAXS data collected at BM29, ESRF on 2022 Jun 9
The disordered C-terminal tail of fungal LPMOs from phytopathogens mediates protein dimerization and impacts plant penetration. Proc Natl Acad Sci U S A 121(13):e2319998121 (2024)
Tamburrini KC, Kodama S, Grisel S, Haon M, Nishiuchi T, Bissaro B, Kubo Y, Longhi S, Berrin JG
RgGuinier 4.1 nm
Dmax 14.6 nm
VolumePorod 85 nm3

SASDUM3 – Colletotrichum higginsianum Auxiliary Activity Family 9A Lytic Polysaccharide Monooxygenase (AA9A LPMO) dimer

Glycosyl hydrolase family 61 experimental SAS data
Glycosyl hydrolase family 61 Kratky plot
Sample: Glycosyl hydrolase family 61 dimer, 61 kDa Colletotrichum higginsianum (strain … protein
Buffer: 50 mM MES, 150 mM NaCl, pH: 6.5
Experiment: SAXS data collected at BM29, ESRF on 2022 Jun 9
The disordered C-terminal tail of fungal LPMOs from phytopathogens mediates protein dimerization and impacts plant penetration. Proc Natl Acad Sci U S A 121(13):e2319998121 (2024)
Tamburrini KC, Kodama S, Grisel S, Haon M, Nishiuchi T, Bissaro B, Kubo Y, Longhi S, Berrin JG
RgGuinier 6.2 nm
Dmax 24.5 nm
VolumePorod 206 nm3