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13 hits found for Hynönen

SASDXF2 – Probable conserved Mce associated membrane protein (Mam1Adelta106) from M.tuberculosis

Probable conserved Mce associated membrane protein experimental SAS data
ALPHAFOLD model
Sample: Probable conserved Mce associated membrane protein tetramer, 59 kDa Mycobacterium tuberculosis (strain … protein
Buffer: 50mM Tris, 500mM NaCl, pH: 8.5
Experiment: SAXS data collected at B21, Diamond Light Source on 2019 Dec 10
Insight into the structure and interactions of the M. tuberculosis Mce-associated membrane proteins Mam1A-1D (2025)
Hynönen M, Perumal P, Hynönen N, Doutch J, Ma K, Venkatesan R
RgGuinier 3.2 nm
Dmax 9.0 nm
VolumePorod 177 nm3

SASDXG2 – Probable conserved Mce associated membrane protein (Mam1Adelta106) from M.tuberculosis (SANS)

Probable conserved Mce associated membrane protein experimental SAS data
ALPHAFOLD model
Sample: Probable conserved Mce associated membrane protein tetramer, 59 kDa Mycobacterium tuberculosis (strain … protein
Buffer: 50 mM Tris, 500 mM NaCl, D-C12E9, pH: 8.5
Experiment: SANS data collected at SANS2D, ISIS Neutron and Muon Source on 2019 Dec 10
Insight into the structure and interactions of the M. tuberculosis Mce-associated membrane proteins Mam1A-1D (2025)
Hynönen M, Perumal P, Hynönen N, Doutch J, Ma K, Venkatesan R
RgGuinier 2.6 nm
Dmax 8.5 nm
VolumePorod 70 nm3

SASDKS8 – Escherichia coli anaerobic fatty acid beta-oxidation trifunctional enzyme subunit alpha (anEcTFE-alpha)

Fatty acid oxidation complex subunit alpha experimental SAS data
DAMMIF model
Sample: Fatty acid oxidation complex subunit alpha monomer, 77 kDa Escherichia coli (strain … protein
Buffer: 50 mM Tris, 500 mM NaCl, 5% glycerol, 2.5 mM DTT, pH: 8
Experiment: SAXS data collected at BM29, ESRF on 2018 Jul 9
Structural basis for different membrane-binding properties of E. coli anaerobic and human mitochondrial β-oxidation trifunctional enzymes. Structure (2023)
...Hynönen MJ, Butcher SJ, Wierenga RK, Novacek J, Venkatesan R
RgGuinier 3.3 nm
Dmax 11.2 nm
VolumePorod 145 nm3

SASDEL9 – Escherichia coli aerobic fatty acid beta-oxidation trifunctional enzyme complex

Fatty acid oxidation complex subunit alphaFatty acid oxidation complex subunit alpha3-ketoacyl-CoA thiolase FadA (beta subunit) experimental SAS data
DAMMIN model
Sample: Fatty acid oxidation complex subunit alpha monomer, 81 kDa Escherichia coli protein
Fatty acid oxidation complex subunit alpha monomer, 81 kDa Escherichia coli protein
3-ketoacyl-CoA thiolase FadA (beta subunit) dimer, 82 kDa Escherichia coli protein
Buffer: 20 mM 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid (HEPES), 120 mM KCl, 2.5 mM DTT, pH: 7.2
Experiment: SAXS data collected at B21, Diamond Light Source on 2017 May 30
Complementary substrate specificity and distinct quaternary assembly of the Escherichia coli aerobic and anaerobic beta-oxidation trifunctional enzyme complexes. Biochem J (2019)
...Hynönen MJ, Schmitz W, Geraets JA, Seitsonen J, Pedersen JS, Butcher SJ, Wierenga RK, Venkatesan R
RgGuinier 4.6 nm
Dmax 16.0 nm
VolumePorod 406 nm3

SASDEM9 – anEcTFE: Escherichia coli anaerobic fatty acid beta-oxidation trifunctional enzyme complex

Fatty acid oxidation complex subunit alphaanaerobic Fatty acid oxidation complex subunit alphaanaerobic Fatty acid oxidation complex subunit alphaanaerobic Fatty acid oxidation complex subunit alphaanaerobic 3-ketoacyl-CoA thiolase FadI beta subunitanaerobic 3-ketoacyl-CoA thiolase FadI beta subunit experimental SAS data
DAMMIN model
Sample: Fatty acid oxidation complex subunit alpha monomer, 77 kDa Escherichia coli (strain … protein
anaerobic Fatty acid oxidation complex subunit alpha monomer, 77 kDa Escherichia coli protein
anaerobic Fatty acid oxidation complex subunit alpha monomer, 77 kDa Escherichia coli protein
anaerobic Fatty acid oxidation complex subunit alpha monomer, 77 kDa Escherichia coli protein
anaerobic 3-ketoacyl-CoA thiolase FadI beta subunit dimer, 96 kDa Escherichia coli protein
anaerobic 3-ketoacyl-CoA thiolase FadI beta subunit dimer, 96 kDa Escherichia coli protein
Buffer: 50 mM Tris, 500 mM NaCl, 5% glycerol, 0.05% C12E9 (1-O-(n-Dodecyl)-nonaethyleneglycol), 2.5 mM DTT, pH: 8
Experiment: SAXS data collected at BM29, ESRF on 2015 Sep 22
Complementary substrate specificity and distinct quaternary assembly of the Escherichia coli aerobic and anaerobic beta-oxidation trifunctional enzyme complexes. Biochem J (2019)
...Hynönen MJ, Schmitz W, Geraets JA, Seitsonen J, Pedersen JS, Butcher SJ, Wierenga RK, Venkatesan R
RgGuinier 6.2 nm
Dmax 19.6 nm
VolumePorod 856 nm3

SASDJU9 – Mammalian cell entry protein 1A (Mce1A36-148)

Mce-family protein Mce1A monomer experimental SAS data
DAMMIN model
Sample: Mce-family protein Mce1A monomer monomer, 17 kDa Mycobacterium tuberculosis protein
Buffer: 50 mM Tris, 350 mM NaCl, 10% Glycerol, pH: 8.5
Experiment: SAXS data collected at B21, Diamond Light Source on 2019 May 10
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 2.1 nm
Dmax 8.7 nm
VolumePorod 29 nm3

SASDK32 – Mammalian cell entry protein 1A (Mce1A38-454)

Mce-family protein Mce1An-Dodecyl-β-D-Maltopyranoside experimental SAS data
CUSTOM IN-HOUSE model
Sample: Mce-family protein Mce1A monomer, 48 kDa Mycobacterium tuberculosis protein
n-Dodecyl-β-D-Maltopyranoside 0, 112 kDa
Buffer: 50 mM Tris, 500 mM NaCl, 10% Glycerol, 5mM DDM, 1 mM β-ME, pH: 8
Experiment: SAXS data collected at B21, Diamond Light Source on 2018 May 13
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 5.3 nm
Dmax 21.6 nm
VolumePorod 362 nm3

SASDK22 – Mammalian cell entry protein 1A (Mce1A126-454)

Mce-family protein Mce1An-Dodecyl-β-D-Maltopyranoside experimental SAS data
CUSTOM IN-HOUSE model
Sample: Mce-family protein Mce1A monomer, 39 kDa Mycobacterium tuberculosis protein
n-Dodecyl-β-D-Maltopyranoside 0, 123 kDa
Buffer: 50 mM Tris, 350 mM NaCl, 10% Glycerol, 5mM DDM, 1 mM β-ME, pH: 7.5
Experiment: SAXS data collected at B21, Diamond Light Source on 2018 Nov 28
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 5.5 nm
Dmax 22.0 nm
VolumePorod 216 nm3

SASDJZ9 – Mammalian cell entry protein 1A (Mce1A38-325)

Mce-family protein Mce1An-Dodecyl-β-D-Maltopyranoside experimental SAS data
CUSTOM IN-HOUSE model
Sample: Mce-family protein Mce1A monomer, 36 kDa Mycobacterium tuberculosis protein
n-Dodecyl-β-D-Maltopyranoside 0, 82 kDa
Buffer: 50 mM Tris, 500 mM NaCl, 10% Glycerol, 5 mM DDM, 1 mM β-ME, pH: 7.5
Experiment: SAXS data collected at B21, Diamond Light Source on 2019 May 2
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 4.6 nm
Dmax 17.5 nm
VolumePorod 151 nm3

SASDJV9 – Mammalian cell entry protein 4A (Mce4A39-140)

Mce-family protein Mce4A experimental SAS data
DAMMIN model
Sample: Mce-family protein Mce4A monomer, 15 kDa Mycobacterium tuberculosis (strain … protein
Buffer: 50mM MOPS, 350mM NaCl, 10% Glycerol, pH: 7
Experiment: SAXS data collected at B21, Diamond Light Source on 2019 May 10
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 2.1 nm
Dmax 7.8 nm
VolumePorod 22 nm3

SASDJW9 – Mammalian cell entry protein 4A (Mce4A36-400)

Mce-family protein Mce4An-Dodecyl-β-D-Maltopyranoside experimental SAS data
OTHER model
Sample: Mce-family protein Mce4A monomer, 44 kDa Mycobacterium tuberculosis (strain … protein
n-Dodecyl-β-D-Maltopyranoside 0, 102 kDa
Buffer: 50mM Tris, 500mM NaCl, 10% Glycerol, 5mM DDM, 1mM Beta-ME, pH: 8
Experiment: SAXS data collected at B21, Diamond Light Source on 2018 May 13
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 5.7 nm
Dmax 21.5 nm
VolumePorod 446 nm3

SASDJX9 – Mammalian cell entry protein 4A (Mce4A121-400)

n-Dodecyl-β-D-MaltopyranosideMce-family protein Mce4A experimental SAS data
CUSTOM IN-HOUSE model
Sample: n-Dodecyl-β-D-Maltopyranoside 0, 102 kDa
Mce-family protein Mce4A monomer, 35 kDa Mycobacterium tuberculosis (strain … protein
Buffer: 50mM Tris, 500mM NaCl, 10% Glycerol, 5mM DDM, 1mM Beta-ME, pH: 8
Experiment: SAXS data collected at B21, Diamond Light Source on 2018 Nov 28
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 5.0 nm
Dmax 19.1 nm
VolumePorod 278 nm3

SASDJY9 – Mammalian cell entry protein 4A (Mce4A39-320)

n-Dodecyl-β-D-MaltopyranosideMce-family protein Mce4A experimental SAS data
CUSTOM IN-HOUSE model
Sample: n-Dodecyl-β-D-Maltopyranoside 0, 102 kDa
Mce-family protein Mce4A monomer, 34 kDa Mycobacterium tuberculosis (strain … protein
Buffer: 50mM Tris, 500mM NaCl, 10% Glycerol, 5mM DDM, 1mM Beta-ME, pH: 8.5
Experiment: SAXS data collected at B21, Diamond Light Source on 2019 May 2
Structural insights into the substrate-binding proteins Mce1A and Mce4A from Mycobacterium tuberculosis IUCrJ 8(5) (2021)
...Hynönen M, Sulu R, Murthy A, Laitaoja M, Jänis J, Riley L, Venkatesan R
RgGuinier 4.8 nm
Dmax 18.2 nm
VolumePorod 189 nm3