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Carlsberg Research Communications
|
January 1, 1989
Primary structure of carboxypeptidase III from malted barley
S B Sørensen, I Svendsen, K Breddam
FEBS Letters
|
November 4, 1991
The primary structure of the glutamic acid-specific protease of Streptomyces griseus
I Svendsen, M R Jensen, K Breddam
Analytical Biochemistry
|
May 8, 1998
Reversed-flow affinity elution applied to the purification of carboxypeptidase Y
U H Mortensen, H R Stennicke, K Breddam
Biochemistry
|
June 4, 1996
Studies on the hydrolytic properties of (serine) carboxypeptidase Y
H R Stennicke, U H Mortensen, K Breddam
Biochemistry
|
September 20, 1994
2.8-A structure of yeast serine carboxypeptidase
J A Endrizzi, K Breddam, S J Remington
The Journal of Biological Chemistry
|
June 3, 1994
Recognition of C-terminal amide groups by (serine) carboxypeptidase Y investigated by site-directed mutagenesis
U H Mortensen, M Raaschou-Nielsen, K Breddam
European Journal of Biochemistry
|
November 1, 1992
Mutational replacements in subtilisin 309. Val104 has a modulating effect on the P4 substrate preference
L M Bech, S B Sørensen, K Breddam
Biochemistry
|
March 23, 1993
Significance of hydrophobic S4-P4 interactions in subtilisin 309 from Bacillus lentus
L M Bech, S B Sørensen, K Breddam
Protein Science : a Publication of the Protein Society
|
November 1, 1996
Characterization of the S1 binding site of the glutamic acid-specific protease from Streptomyces griseus
H R Stennicke, J J Birktoft, K Breddam
Biochemistry
|
January 18, 1994
Site-directed mutagenesis on (serine) carboxypeptidase Y. A hydrogen bond network stabilizes the transition state by interaction with the C-terminal carboxylate group of the substrate
U H Mortensen, S J Remington, K Breddam
Page
of 6
Search research articles
Search
Showing results (21-30 of 52) with videos related to
Sort By:
Page
of 6
Carlsberg Research Communications
|
January 1, 1989
Primary structure of carboxypeptidase III from malted barley
S B Sørensen, I Svendsen, K Breddam
FEBS Letters
|
November 4, 1991
The primary structure of the glutamic acid-specific protease of Streptomyces griseus
I Svendsen, M R Jensen, K Breddam
Analytical Biochemistry
|
May 8, 1998
Reversed-flow affinity elution applied to the purification of carboxypeptidase Y
U H Mortensen, H R Stennicke, K Breddam
Biochemistry
|
June 4, 1996
Studies on the hydrolytic properties of (serine) carboxypeptidase Y
H R Stennicke, U H Mortensen, K Breddam
Biochemistry
|
September 20, 1994
2.8-A structure of yeast serine carboxypeptidase
J A Endrizzi, K Breddam, S J Remington
The Journal of Biological Chemistry
|
June 3, 1994
Recognition of C-terminal amide groups by (serine) carboxypeptidase Y investigated by site-directed mutagenesis
U H Mortensen, M Raaschou-Nielsen, K Breddam
European Journal of Biochemistry
|
November 1, 1992
Mutational replacements in subtilisin 309. Val104 has a modulating effect on the P4 substrate preference
L M Bech, S B Sørensen, K Breddam
Biochemistry
|
March 23, 1993
Significance of hydrophobic S4-P4 interactions in subtilisin 309 from Bacillus lentus
L M Bech, S B Sørensen, K Breddam
Protein Science : a Publication of the Protein Society
|
November 1, 1996
Characterization of the S1 binding site of the glutamic acid-specific protease from Streptomyces griseus
H R Stennicke, J J Birktoft, K Breddam
Biochemistry
|
January 18, 1994
Site-directed mutagenesis on (serine) carboxypeptidase Y. A hydrogen bond network stabilizes the transition state by interaction with the C-terminal carboxylate group of the substrate
U H Mortensen, S J Remington, K Breddam
Page
of 6