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Biophysical Chemistry
|
October 18, 2001
Thermodynamics of the hydrophobic effect. III. Condensation and aggregation of alkanes, alcohols, and alkylamines
D Matulis
Biophysical Journal
|
February 4, 1998
1-Anilino-8-naphthalene sulfonate anion-protein binding depends primarily on ion pair formation
D Matulis, R Lovrien
Biophysical Chemistry
|
October 18, 2001
Thermodynamics of the hydrophobic effect. II. Calorimetric measurement of enthalpy, entropy, and heat capacity of aggregation of alkylamines and long aliphatic chains
D Matulis, V A Bloomfield
Biophysical Chemistry
|
October 18, 2001
Thermodynamics of the hydrophobic effect. I. Coupling of aggregation and pK(a) shifts in solutions of aliphatic amines
D Matulis, V A Bloomfield
Current Protocols in Protein Science
|
April 23, 2008
Selective precipitation of proteins
R E Lovrien, D Matulis
Journal of Molecular Recognition : JMR
|
September 1, 1996
Coprecipitation of proteins with matrix ligands: scaleable protein isolation
D Matulis, R Lovrien, T I Richardson
Analytical Biochemistry
|
March 26, 1998
Lectin coprecipitative isolation from crudes by Little Rock Orange ligand
C W Wu, R Lovrien, D Matulis
Journal of Molecular Biology
|
February 25, 2000
Thermodynamics of DNA binding and condensation: isothermal titration calorimetry and electrostatic mechanism
D Matulis, I Rouzina, V A Bloomfield
FEMS Microbiology Letters
|
November 14, 1997
Nickel resistance in Escherichia coli V38 is dependent on the concentration used for induction
J Rubikas, D Matulis, A Leipus, et al.
Biopolymers
|
April 8, 1999
1-anilino-8-naphthalene sulfonate as a protein conformational tightening agent
D Matulis, C G Baumann, V A Bloomfield, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Biophysical Chemistry
|
October 18, 2001
Thermodynamics of the hydrophobic effect. III. Condensation and aggregation of alkanes, alcohols, and alkylamines
D Matulis
Biophysical Journal
|
February 4, 1998
1-Anilino-8-naphthalene sulfonate anion-protein binding depends primarily on ion pair formation
D Matulis, R Lovrien
Biophysical Chemistry
|
October 18, 2001
Thermodynamics of the hydrophobic effect. II. Calorimetric measurement of enthalpy, entropy, and heat capacity of aggregation of alkylamines and long aliphatic chains
D Matulis, V A Bloomfield
Biophysical Chemistry
|
October 18, 2001
Thermodynamics of the hydrophobic effect. I. Coupling of aggregation and pK(a) shifts in solutions of aliphatic amines
D Matulis, V A Bloomfield
Current Protocols in Protein Science
|
April 23, 2008
Selective precipitation of proteins
R E Lovrien, D Matulis
Journal of Molecular Recognition : JMR
|
September 1, 1996
Coprecipitation of proteins with matrix ligands: scaleable protein isolation
D Matulis, R Lovrien, T I Richardson
Analytical Biochemistry
|
March 26, 1998
Lectin coprecipitative isolation from crudes by Little Rock Orange ligand
C W Wu, R Lovrien, D Matulis
Journal of Molecular Biology
|
February 25, 2000
Thermodynamics of DNA binding and condensation: isothermal titration calorimetry and electrostatic mechanism
D Matulis, I Rouzina, V A Bloomfield
FEMS Microbiology Letters
|
November 14, 1997
Nickel resistance in Escherichia coli V38 is dependent on the concentration used for induction
J Rubikas, D Matulis, A Leipus, et al.
Biopolymers
|
April 8, 1999
1-anilino-8-naphthalene sulfonate as a protein conformational tightening agent
D Matulis, C G Baumann, V A Bloomfield, et al.
Page
of 2