SummaryThe GLA domain, a common membrane-anchoring domain of several serine protease coagulation factors, is a key element in membrane association and activation of these factors in a highly Ca2+-dependent manner. However, the critical role of Ca2+ ions in binding is only poorly understood. Here, we present the atomic model of a membrane-bound GLA domain by using MD simulations of the GLA domain of human factor VIIa and an anionic lipid bilayer. The binding is furnished through a complete insertion of the ω-loop into the membrane and through direct interactions of structurally bound Ca2+ ions and protein side chains with negative lipids. The model suggests that Ca2+ ions play two distinct roles in the process: the four inner Ca2+ ions are p...
In case of an injury platelets become activated and proper interaction of blood clotting proteins wi...
The blood coagulation cascade is initiated when the cell-surface complex of factor VIIa (FVIIa, a tr...
AbstractIt is demonstrated here that osteocalcin, the Gla-containing protein from bone, is unable to...
SummaryThe GLA domain, a common membrane-anchoring domain of several serine protease coagulation fac...
AbstractInteraction between the Gla-domain of coagulation proteins and negatively charged phospholip...
Reversible membrane binding of γ-carboxyglutamic acid (Gla)-containing coagulation factors requires ...
Blood clotting is triggered when the plasma serine protease factor VIIa binds to the cell-surface pr...
AbstractNewly determined crystal structures suggest that the membrane-binding C2 domains of blood co...
Haemostasis is a highly regulated, fundamental, physiological process featuring numerous peripheral ...
Haemostasis is a highly regulated, fundamental, physiological process featuring numerous peripheral ...
Vascular trauma triggers the blood clotting cascade to maintain hemostasis by sequentially convertin...
Calcium (Ca2+) plays a pivotal role in cellular and organismal physiology. The Ca2+ ion has an inter...
Vascular trauma triggers the blood clotting cascade to maintain hemostasis by sequentially convertin...
Calcium (Ca2+) plays a pivotal role in cellular and organismal physiology. The Ca2+ ion has an inter...
Calcium (Ca2+) plays a pivotal role in cellular and organismal physiology. The Ca2+ ion has an inter...
In case of an injury platelets become activated and proper interaction of blood clotting proteins wi...
The blood coagulation cascade is initiated when the cell-surface complex of factor VIIa (FVIIa, a tr...
AbstractIt is demonstrated here that osteocalcin, the Gla-containing protein from bone, is unable to...
SummaryThe GLA domain, a common membrane-anchoring domain of several serine protease coagulation fac...
AbstractInteraction between the Gla-domain of coagulation proteins and negatively charged phospholip...
Reversible membrane binding of γ-carboxyglutamic acid (Gla)-containing coagulation factors requires ...
Blood clotting is triggered when the plasma serine protease factor VIIa binds to the cell-surface pr...
AbstractNewly determined crystal structures suggest that the membrane-binding C2 domains of blood co...
Haemostasis is a highly regulated, fundamental, physiological process featuring numerous peripheral ...
Haemostasis is a highly regulated, fundamental, physiological process featuring numerous peripheral ...
Vascular trauma triggers the blood clotting cascade to maintain hemostasis by sequentially convertin...
Calcium (Ca2+) plays a pivotal role in cellular and organismal physiology. The Ca2+ ion has an inter...
Vascular trauma triggers the blood clotting cascade to maintain hemostasis by sequentially convertin...
Calcium (Ca2+) plays a pivotal role in cellular and organismal physiology. The Ca2+ ion has an inter...
Calcium (Ca2+) plays a pivotal role in cellular and organismal physiology. The Ca2+ ion has an inter...
In case of an injury platelets become activated and proper interaction of blood clotting proteins wi...
The blood coagulation cascade is initiated when the cell-surface complex of factor VIIa (FVIIa, a tr...
AbstractIt is demonstrated here that osteocalcin, the Gla-containing protein from bone, is unable to...