Crystal and molecular structure of human annexin v after refinement. implications for structure, membrane binding and ion channel formation of the annexin family of proteins Deposition Author(s): Berendes, R. , Burger, A. , Huber, R. , Karshikov, A. , Luecke, H. , Paques, E. , Roemisch, J. , Schneider, M.
Date: 1991-10-17 Method: X-RAY DIFFRACTION Resolution: 2.3 Å Organism(s): Homo Sapiens Sequences Data: 1AVH_A , 1AVH_B
Crystal and molecular structure of human annexin v after refinement. implications for structure, membrane binding and ion channel formation of the annexin family of proteins Deposition Author(s): Berendes, R. , Burger, A. , Huber, R. , Karshikov, A. , Luecke, H. , Paques, E. , Roemisch, J. , Schneider, M.
Date: 1991-10-17 Method: X-RAY DIFFRACTION Resolution: 2.3 Å Organism(s): Homo Sapiens Sequences Data: 1AVR_A
Structural and electrophysiological analysis of annexin v mutants. mutagenesis of human annexin v, an in vitro voltage-gated calcium channel, provides information about the structural features of the ion pathway, the voltage sensor and the ion selectivity filter Deposition Author(s): Burger, A. , Huber, R.
Date: 1994-06-29 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Homo Sapiens Sequences Data: 1HVD_A
Structural and electrophysiological analysis of annexin v mutants. mutagenesis of human annexin v, an in vitro voltage-gated calcium channel, provides information about the structural features of the ion pathway, the voltage sensor and the ion selectivity filter Deposition Author(s): Burger, A. , Huber, R.
Date: 1994-06-29 Method: X-RAY DIFFRACTION Resolution: 2.3 Å Organism(s): Homo Sapiens Sequences Data: 1HVE_A
Structural and electrophysiological analysis of annexin v mutants. mutagenesis of human annexin v, an in vitro voltage-gated calcium channel, provides information about the structural features of the ion pathway, the voltage sensor and the ion selectivity filter Deposition Author(s): Burger, A. , Huber, R.
Date: 1994-06-29 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Homo Sapiens Sequences Data: 1HVF_A
Structural and electrophysiological analysis of annexin v mutants. mutagenesis of human annexin v, an in vitro voltage-gated calcium channel, provides information about the structural features of the ion pathway, the voltage sensor and the ion selectivity filter Deposition Author(s): Burger, A. , Huber, R.
Date: 1994-06-29 Method: X-RAY DIFFRACTION Resolution: 3 Å Organism(s): Homo Sapiens Sequences Data: 1HVG_A