1HVG | Calcium Phospholipid Binding | date | Jun 29, 1994 |
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title | Structural And Electrophysiological Analysis Of Annexin V Mu Mutagenesis Of Human Annexin V, An In Vitro Voltage-Gated C Channel, Provides Information About The Structural Features Ion Pathway, The Voltage Sensor And The Ion Selectivity Fil | ||||||||||||||
authors | A.Burger, R.Huber | ||||||||||||||
compound | source | ||||||||||||||
Molecule: Annexin V Chain: A Engineered: Yes |
Organism_scientific: Homo Sapiens Organism_common: Human Organism_taxid: 9606 Cell_line: 293 Organ: Placenta Unfused Gene: Cdna Expression_system: Escherichia Coli Expression_system_taxid: 562 Expression_system_strain: 293 Expression_system_plasmid: Ptrc 99a-Pp4 Gene: Cdna | ||||||||||||||
symmetry | Space Group: H 3 |
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crystal cell |
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method | X-Ray Diffraction | resolution | 3.00 Å | ||||||||||||
related structures | by homologous chain: 1HAK, 1N44 | ||||||||||||||
Gene Ontology |
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Primary reference | 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., Burger A, Voges D, Demange P, Perez CR, Huber R, Berendes R, J Mol Biol 1994 Apr 8;237(4):479-99. PMID:8151707 |
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