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R Wetzel

Showing results (31-40 of 131) with videos related to

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Protein Engineering|February 1, 1987
The role of cysteine oxidation in the thermal inactivation of T4 lysozymeL J Perry, R Wetzel
Science (New York, N.Y.)|November 2, 1984
Disulfide bond engineered into T4 lysozyme: stabilization of the protein toward thermal inactivationL J Perry, R Wetzel
FEBS Letters|August 22, 1994
Inclusion body formation by interleukin-1 beta depends on the thermal sensitivity of a folding intermediateR Wetzel, B A Chrunyk
American Journal of Veterinary Research|February 27, 1999
Tissue and plasma enzyme activities in juvenile green iguanasR A Wagner, R Wetzel
Protein Engineering|September 1, 1993
Breakdown in the relationship between thermal and thermodynamic stability in an interleukin-1 beta point mutant modified in a surface loopB A Chrunyk, R Wetzel
Archiv Fur Tierernahrung|July 1, 1978
[Behavior of trace elements copper, zinc and manganese in bovine rumen. 2. Passage rate and course of trace element concentration in rumen as influenced by copper sulfate administration]R Wetzel, K H Menke
Protein Science : a Publication of the Protein Society|July 1, 1994
Proteolytic excision and in situ cyclization of a bioactive loop from an REI-VL presentation scaffoldL R Helms, R Wetzel
Protein Science : a Publication of the Protein Society|October 1, 1995
Destabilizing loop swaps in the CDRs of an immunoglobulin VL domainL R Helms, R Wetzel
Journal of Molecular Biology|March 22, 1996
Specificity of abnormal assembly in immunoglobulin light chain deposition disease and amyloidosisL R Helms, R Wetzel
Biochemistry|February 11, 1986
Unpaired cysteine-54 interferes with the ability of an engineered disulfide to stabilize T4 lysozymeL J Perry, R Wetzel
Pageof 14

Showing results (31-40 of 131) with videos related to

Sort By:
Pageof 14
Protein Engineering|February 1, 1987
The role of cysteine oxidation in the thermal inactivation of T4 lysozymeL J Perry, R Wetzel
Science (New York, N.Y.)|November 2, 1984
Disulfide bond engineered into T4 lysozyme: stabilization of the protein toward thermal inactivationL J Perry, R Wetzel
FEBS Letters|August 22, 1994
Inclusion body formation by interleukin-1 beta depends on the thermal sensitivity of a folding intermediateR Wetzel, B A Chrunyk
American Journal of Veterinary Research|February 27, 1999
Tissue and plasma enzyme activities in juvenile green iguanasR A Wagner, R Wetzel
Protein Engineering|September 1, 1993
Breakdown in the relationship between thermal and thermodynamic stability in an interleukin-1 beta point mutant modified in a surface loopB A Chrunyk, R Wetzel
Archiv Fur Tierernahrung|July 1, 1978
[Behavior of trace elements copper, zinc and manganese in bovine rumen. 2. Passage rate and course of trace element concentration in rumen as influenced by copper sulfate administration]R Wetzel, K H Menke
Protein Science : a Publication of the Protein Society|July 1, 1994
Proteolytic excision and in situ cyclization of a bioactive loop from an REI-VL presentation scaffoldL R Helms, R Wetzel
Protein Science : a Publication of the Protein Society|October 1, 1995
Destabilizing loop swaps in the CDRs of an immunoglobulin VL domainL R Helms, R Wetzel
Journal of Molecular Biology|March 22, 1996
Specificity of abnormal assembly in immunoglobulin light chain deposition disease and amyloidosisL R Helms, R Wetzel
Biochemistry|February 11, 1986
Unpaired cysteine-54 interferes with the ability of an engineered disulfide to stabilize T4 lysozymeL J Perry, R Wetzel
Pageof 14