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R A Engh

Showing results (1-10 of 39) with videos related to

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Advances in Enzyme Regulation|June 1, 2001
The protein kinase activity modulation sites: mechanisms for cellular regulation - targets for therapeutic interventionR A Engh, D Bossemeyer
Protein Engineering|May 1, 1990
Modeling the intact form of the alpha 1-proteinase inhibitorR A Engh, H T Wright, R Huber
Trends in Biotechnology|December 1, 1995
Divining the serpin inhibition mechanism: a suicide substrate 'springe'?R A Engh, R Huber, W Bode, et al.
FEBS Letters|May 16, 1994
Structural aspects of serpin inhibitionA J Schulze, R Huber, W Bode, et al.
Behring Institute Mitteilungen|December 1, 1993
Serpin structuresR A Engh, A J Schulze, R Huber, et al.
The Journal of Biological Chemistry|October 18, 1996
Crystal structures of catalytic subunit of cAMP-dependent protein kinase in complex with isoquinolinesulfonyl protein kinase inhibitors H7, H8, and H89. Structural implications for selectivityR A Engh, A Girod, V Kinzel, et al.
Biochemistry|August 25, 1992
Evidence for the extent of insertion of the active site loop of intact alpha 1 proteinase inhibitor in beta-sheet AA J Schulze, P W Frohnert, R A Engh, et al.
European Journal of Biochemistry|March 1, 1993
The 0.25-nm X-ray structure of the Bowman-Birk-type inhibitor from mung bean in ternary complex with porcine trypsinG Lin, W Bode, R Huber, et al.
The EMBO Journal|March 1, 1993
Phosphotransferase and substrate binding mechanism of the cAMP-dependent protein kinase catalytic subunit from porcine heart as deduced from the 2.0 A structure of the complex with Mn2+ adenylyl imidodiphosphate and inhibitor peptide PKI(5-24)D Bossemeyer, R A Engh, V Kinzel, et al.
Structure (London, England : 1993)|February 7, 1998
Staurosporine-induced conformational changes of cAMP-dependent protein kinase catalytic subunit explain inhibitory potentialL Prade, R A Engh, A Girod, et al.
Pageof 4

Showing results (1-10 of 39) with videos related to

Sort By:
Pageof 4
Advances in Enzyme Regulation|June 1, 2001
The protein kinase activity modulation sites: mechanisms for cellular regulation - targets for therapeutic interventionR A Engh, D Bossemeyer
Protein Engineering|May 1, 1990
Modeling the intact form of the alpha 1-proteinase inhibitorR A Engh, H T Wright, R Huber
Trends in Biotechnology|December 1, 1995
Divining the serpin inhibition mechanism: a suicide substrate 'springe'?R A Engh, R Huber, W Bode, et al.
FEBS Letters|May 16, 1994
Structural aspects of serpin inhibitionA J Schulze, R Huber, W Bode, et al.
Behring Institute Mitteilungen|December 1, 1993
Serpin structuresR A Engh, A J Schulze, R Huber, et al.
The Journal of Biological Chemistry|October 18, 1996
Crystal structures of catalytic subunit of cAMP-dependent protein kinase in complex with isoquinolinesulfonyl protein kinase inhibitors H7, H8, and H89. Structural implications for selectivityR A Engh, A Girod, V Kinzel, et al.
Biochemistry|August 25, 1992
Evidence for the extent of insertion of the active site loop of intact alpha 1 proteinase inhibitor in beta-sheet AA J Schulze, P W Frohnert, R A Engh, et al.
European Journal of Biochemistry|March 1, 1993
The 0.25-nm X-ray structure of the Bowman-Birk-type inhibitor from mung bean in ternary complex with porcine trypsinG Lin, W Bode, R Huber, et al.
The EMBO Journal|March 1, 1993
Phosphotransferase and substrate binding mechanism of the cAMP-dependent protein kinase catalytic subunit from porcine heart as deduced from the 2.0 A structure of the complex with Mn2+ adenylyl imidodiphosphate and inhibitor peptide PKI(5-24)D Bossemeyer, R A Engh, V Kinzel, et al.
Structure (London, England : 1993)|February 7, 1998
Staurosporine-induced conformational changes of cAMP-dependent protein kinase catalytic subunit explain inhibitory potentialL Prade, R A Engh, A Girod, et al.
Pageof 4