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14 hits found for Bauer

SASDCL2 – Tandem CBD from Clostridium histolyticum ColG collagenase at pCa 3

Class1 collagenase experimental SAS data
DAMMIF model
Sample: Class1 collagenase monomer, 27 kDa Hathewaya histolytica protein
Buffer: 10 mM HEPES 100 mM NaCL, 2% glycerol, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2015 Sep 14
Structural characterization of bacterial collagenases University of Arkansas PhD thesis 2431 (2017)
Bauer R
RgGuinier 2.4 nm
Dmax 7.5 nm
VolumePorod 36 nm3

SASDCM2 – Tandem CBD from Clostridium histolyticum ColG collagenase at pCa 4

Class1 collagenase collagen-binding domain experimental SAS data
DAMMIF model
Sample: Class1 collagenase collagen-binding domain monomer, 27 kDa Hathewaya histolytica protein
Buffer: 10 mM HEPES 100 mM NaCL, 2% glycerol, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2015 Sep 14
Structural characterization of bacterial collagenases University of Arkansas PhD thesis 2431 (2017)
Bauer R
RgGuinier 2.4 nm
Dmax 9.8 nm
VolumePorod 33 nm3

SASDCN2 – Tandem CBD from Clostridium histolyticum ColG collagenase at pCa 5

Class1 collagenase experimental SAS data
DAMMIF model
Sample: Class1 collagenase monomer, 27 kDa Hathewaya histolytica protein
Buffer: 10 mM HEPES 100 mM NaCL, 2% glycerol, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2016 Sep 14
Structural characterization of bacterial collagenases University of Arkansas PhD thesis 2431 (2017)
Bauer R
RgGuinier 2.5 nm
Dmax 9.4 nm
VolumePorod 36 nm3

SASDCP2 – Tandem CBD from Clostridium histolyticum ColG collagenase at pCa 6

Class1 collagenase experimental SAS data
DAMMIF model
Sample: Class1 collagenase monomer, 27 kDa Hathewaya histolytica protein
Buffer: 10 mM HEPES 100 mM NaCL, 2% glycerol, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2015 Sep 14
Structural characterization of bacterial collagenases University of Arkansas PhD thesis 2431 (2017)
Bauer R
RgGuinier 2.6 nm
Dmax 12.8 nm
VolumePorod 33 nm3

SASDWX3 – Full length peroxisome proliferator-activated receptor gamma (PPARγ)

Peroxisome proliferator-activated receptor gamma experimental SAS data
Peroxisome proliferator-activated receptor gamma Kratky plot
Sample: Peroxisome proliferator-activated receptor gamma monomer, 58 kDa Homo sapiens protein
Buffer: 20 mM HEPES, 150 mM KCl, 1 mM TCEP, 2% v/v glycerol, pH: 7.4
Experiment: SAXS data collected at EMBL P12, PETRA III on 2021 Dec 12
Autoinhibition of untimely DNA binding by structural disorder in the full-length peroxisome proliferator-activated receptors (PPARs) Nature Communications (2026)
...Bauer L, McKenna J, Olsen J, Mandrup S, Hartmann-Petersen R, Jeffries C, Staller M, Lindorff-Larsen K, Kragelund B
RgGuinier 3.7 nm
Dmax 16.5 nm
VolumePorod 123 nm3

SASDWY3 – N-terminal truncation of peroxisome proliferator-activated receptor gamma (ΔAB-PPARγ)

Peroxisome proliferator-activated receptor gamma experimental SAS data
Peroxisome proliferator-activated receptor gamma Kratky plot
Sample: Peroxisome proliferator-activated receptor gamma monomer, 43 kDa Homo sapiens protein
Buffer: 25 mM HEPES, 150 mM NaCl, 5 mM NaNO3, 5 mM TCEP, pH: 7.4
Experiment: SAXS data collected at EMBL P12, PETRA III on 2022 Mar 20
Autoinhibition of untimely DNA binding by structural disorder in the full-length peroxisome proliferator-activated receptors (PPARs) Nature Communications (2026)
...Bauer L, McKenna J, Olsen J, Mandrup S, Hartmann-Petersen R, Jeffries C, Staller M, Lindorff-Larsen K, Kragelund B
RgGuinier 2.4 nm
Dmax 8.4 nm
VolumePorod 71 nm3

SASDWZ3 – The intrinsically disordered N-terminal AB domain of peroxisome proliferator-activated receptor gamma (PPARγ-AB)

Peroxisome proliferator-activated receptor gamma experimental SAS data
Peroxisome proliferator-activated receptor gamma Kratky plot
Sample: Peroxisome proliferator-activated receptor gamma monomer, 15 kDa Homo sapiens protein
Buffer: 25 mM HEPES, 150 mM NaCl, 5 mM NaNO3, 5 mM TCEP, pH: 7.4
Experiment: SAXS data collected at EMBL P12, PETRA III on 2023 Mar 16
Autoinhibition of untimely DNA binding by structural disorder in the full-length peroxisome proliferator-activated receptors (PPARs) Nature Communications (2026)
...Bauer L, McKenna J, Olsen J, Mandrup S, Hartmann-Petersen R, Jeffries C, Staller M, Lindorff-Larsen K, Kragelund B
RgGuinier 3.5 nm
Dmax 16.0 nm
VolumePorod 21 nm3

SASDW24 – The N-terminal AB domain and DNA binding domain of peroxisome proliferator-activated receptor alpha (PPARα-ABDBD)

Peroxisome proliferator-activated receptor alpha experimental SAS data
Peroxisome proliferator-activated receptor alpha Kratky plot
Sample: Peroxisome proliferator-activated receptor alpha monomer, 20 kDa Homo sapiens protein
Buffer: 25 mM HEPES, 150 mM NaCl, 5 mM NaNO3, 5 mM TCEP, pH: 7.4
Experiment: SAXS data collected at EMBL P12, PETRA III on 2023 Mar 16
Autoinhibition of untimely DNA binding by structural disorder in the full-length peroxisome proliferator-activated receptors (PPARs) Nature Communications (2026)
...Bauer L, McKenna J, Olsen J, Mandrup S, Hartmann-Petersen R, Jeffries C, Staller M, Lindorff-Larsen K, Kragelund B
RgGuinier 2.4 nm
Dmax 10.3 nm
VolumePorod 37 nm3

SASDW34 – The intrinsically disordered N-terminal AB domain of peroxisome proliferator-activated receptor alpha (PPARα-AB)

Peroxisome proliferator-activated receptor alpha experimental SAS data
Peroxisome proliferator-activated receptor alpha Kratky plot
Sample: Peroxisome proliferator-activated receptor alpha monomer, 10 kDa Homo sapiens protein
Buffer: 25 mM HEPES, 150 mM NaCl, 5 mM NaNO3, 5 mM TCEP, pH: 7.4
Experiment: SAXS data collected at EMBL P12, PETRA III on 2023 Mar 16
Autoinhibition of untimely DNA binding by structural disorder in the full-length peroxisome proliferator-activated receptors (PPARs) Nature Communications (2026)
...Bauer L, McKenna J, Olsen J, Mandrup S, Hartmann-Petersen R, Jeffries C, Staller M, Lindorff-Larsen K, Kragelund B
RgGuinier 3.0 nm
Dmax 11.0 nm
VolumePorod 16 nm3

SASDC44 – Envelope of Col H PKD-CBD complexed with mini-collagen

ColH proteinCollagenous Peptide model [(PPG)10] experimental SAS data
DAMMIF model
Sample: ColH protein monomer, 24 kDa Hathewaya histolytica protein
Collagenous Peptide model [(PPG)10] trimer, 9 kDa synthetic construct protein
Buffer: 50 mM HEPES, 100 mM NaCl, 5 mM CaCl2, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2016 Oct 12
Ca2+ -induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardation. FEBS J 285(17):3254-3269 (2018)
...Bauer R, Tanaka K, Janowska K, Roeser JR, Harter D, Sanders J, Ruth C, Matsushita O, Sakon J
RgGuinier 2.7 nm
Dmax 12.0 nm
VolumePorod 28 nm3

SASDC54 – Envelope of Col H PKD-PKD-CBD complexed with mini-collagen

ColH proteinCollagenous Peptide model [(PPG)10] experimental SAS data
DAMMIF model
Sample: ColH protein monomer, 34 kDa Hathewaya histolytica protein
Collagenous Peptide model [(PPG)10] trimer, 10 kDa synthetic construct protein
Buffer: 50 mM HEPES, 100 mM NaCl, 5 mM CaCl2, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2016 Oct 12
Ca2+ -induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardation. FEBS J 285(17):3254-3269 (2018)
...Bauer R, Tanaka K, Janowska K, Roeser JR, Harter D, Sanders J, Ruth C, Matsushita O, Sakon J
RgGuinier 3.3 nm
Dmax 14.2 nm
VolumePorod 38 nm3

SASDC64 – Envelope of Col G PKD-CBD-CBD complexed with mini-collagen

Collagenous Peptide model [(PPG)10]ColG Collagenase experimental SAS data
DAMMIF model
Sample: Collagenous Peptide model [(PPG)10] trimer, 9 kDa synthetic construct protein
ColG Collagenase monomer, 37 kDa Hathewaya histolytica protein
Buffer: 50 mM HEPES, 100 mM NaCl, 5 mM CaCl2, pH: 7.5
Experiment: SAXS data collected at 12.3.1 (SIBYLS), Advanced Light Source (ALS) on 2016 Oct 12
Ca2+ -induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardation. FEBS J 285(17):3254-3269 (2018)
...Bauer R, Tanaka K, Janowska K, Roeser JR, Harter D, Sanders J, Ruth C, Matsushita O, Sakon J
RgGuinier 4.1 nm
Dmax 19.3 nm
VolumePorod 70 nm3

SASDZ88 – Synthetic fusion protein comprising human IgG1 Fc, the CHAP domain of engineered Staphylococcus aureus LytN, and engineered Staphylococcus simulans lysostaphin (Fc-L2a-CHAP(alt)-LSN(HEK))

Fc-L2a-CHAP(alt)-LSN(HEK) experimental SAS data
Fc-L2a-CHAP(alt)-LSN(HEK) Kratky plot
Sample: Fc-L2a-CHAP(alt)-LSN(HEK) dimer, 156 kDa synthetic construct protein
Buffer: 20 mM HEPES, 150 mM NaCl, pH 7.0, pH: 7
Experiment: SAXS data collected at EMBL P12, PETRA III on 2025 Apr 6
A chimeric, half-life extended lysin with a unique mode of action Frontiers in Microbiology 17 (2026)
...Bauer B, Qiao R, Durica-Mitic S, Majoros-Hashempour A, Schmidt J, Berdaguer R, Krey K, Mutti M, Zerbs M, von Freyberg M, Corsini L, Badarau A
RgGuinier 8.9 nm
Dmax 40.0 nm

SASDZ98 – Engineered fusion of derivative of S.aureus LytN (CHAP domain) and derivative of S.simulans lysostaphin (Fc-L1-CHAP(opt)-LSN(HEK))

Fc-L1-CHAP(opt)-LSN(HEK) experimental SAS data
Fc-L1-CHAP(opt)-LSN(HEK) Kratky plot
Sample: Fc-L1-CHAP(opt)-LSN(HEK) dimer, 148 kDa synthetic construct protein
Buffer: 20 mM HEPES, 150 mM NaCl, pH 7.0, pH: 7
Experiment: SAXS data collected at EMBL P12, PETRA III on 2025 Apr 6
A chimeric, half-life extended lysin with a unique mode of action Frontiers in Microbiology 17 (2026)
...Bauer B, Qiao R, Durica-Mitic S, Majoros-Hashempour A, Schmidt J, Berdaguer R, Krey K, Mutti M, Zerbs M, von Freyberg M, Corsini L, Badarau A
RgGuinier 7.3 nm
Dmax 40.0 nm