Sandbox Reserved 1447
From Proteopedia
(Difference between revisions)
Line 4: | Line 4: | ||
== Introduction == | == Introduction == | ||
- | The von Willebrand Factor (VWF), observed by physician Erik von Willebrand, plays an important role in stopping the flow of blood. Hemostasis is the first step in healing a wound and is crucial for blood vessel repair. Located on chromosome 12, VWF interacts with functional domains such as the vascular wall, coagulation factor VIII, and platelet receptors <refname="role"<ref>DOI:10.2450/2011.002S</ref>. | + | The von Willebrand Factor (VWF), observed by physician Erik von Willebrand, plays an important role in stopping the flow of blood. Hemostasis is the first step in healing a wound and is crucial for blood vessel repair. Located on chromosome 12, VWF interacts with functional domains such as the vascular wall, coagulation factor VIII, and platelet receptors <refname="role"><ref>DOI:10.2450/2011.002S</ref>. |
== Function == | == Function == | ||
Upon a vascular injury, such as a paper cut, the von Willebrand factor binds to receptors on platelets, particularly glycoprotein Ib. VWF will also bind to components of the endothelial matrix, such as collagen <ref>PMID:29416854</ref>. Once it is bound to the receptors, factor VIII, and to matrix components, the factor will then create an adhesive bridge to the location of injury by the use of collagen and platelets. Factor VIII is important in activating the process of coagulation. After factor VIII becomes activated, it is cleaved by thrombin. | Upon a vascular injury, such as a paper cut, the von Willebrand factor binds to receptors on platelets, particularly glycoprotein Ib. VWF will also bind to components of the endothelial matrix, such as collagen <ref>PMID:29416854</ref>. Once it is bound to the receptors, factor VIII, and to matrix components, the factor will then create an adhesive bridge to the location of injury by the use of collagen and platelets. Factor VIII is important in activating the process of coagulation. After factor VIII becomes activated, it is cleaved by thrombin. |
Revision as of 18:35, 2 May 2018
This Sandbox is Reserved from Jan 22 through May 22, 2018 for use in the course Biochemistry II taught by Jason Telford at the Maryville University, St. Louis, Missouri, USA. This reservation includes Sandbox Reserved 1446 through Sandbox Reserved 1455. |
To get started:
More help: Help:Editing |
von Willebrand Factor
|
References
- ↑ Peyvandi F, Garagiola I, Baronciani L. Role of von Willebrand factor in the haemostasis. Blood Transfus. 2011 May;9 Suppl 2:s3-8. doi: 10.2450/2011.002S. PMID:21839029 doi:http://dx.doi.org/10.2450/2011.002S
- ↑ Desch KC. Regulation of plasma von Willebrand factor. F1000Res. 2018 Jan 23;7:96. doi: 10.12688/f1000research.13056.1. eCollection, 2018. PMID:29416854 doi:http://dx.doi.org/10.12688/f1000research.13056.1
- ↑ Lenting PJ, Christophe OD, Denis CV. von Willebrand factor biosynthesis, secretion, and clearance: connecting the far ends. Blood. 2015 Mar 26;125(13):2019-28. doi: 10.1182/blood-2014-06-528406. Epub 2015 , Feb 23. PMID:25712991 doi:http://dx.doi.org/10.1182/blood-2014-06-528406
- ↑ Echahdi H, El Hasbaoui B, El Khorassani M, Agadr A, Khattab M. Von Willebrand's disease: case report and review of literature. Pan Afr Med J. 2017 Jun 29;27:147. doi: 10.11604/pamj.2017.27.147.12248., eCollection 2017. PMID:28904675 doi:http://dx.doi.org/10.11604/pamj.2017.27.147.12248
- ↑ Huang RH, Fremont DH, Diener JL, Schaub RG, Sadler JE. A structural explanation for the antithrombotic activity of ARC1172, a DNA aptamer that binds von Willebrand factor domain A1. Structure. 2009 Nov 11;17(11):1476-84. PMID:19913482 doi:10.1016/j.str.2009.09.011
- ↑ Jakobi AJ, Mashaghi A, Tans SJ, Huizinga EG. Calcium modulates force sensing by the von Willebrand factor A2 domain. Nat Commun. 2011 Jul 12;2:385. doi: 10.1038/ncomms1385. PMID:21750539 doi:10.1038/ncomms1385