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== '''Coagulation Factor VIII (3cdz)''' ==
== '''Coagulation Factor VIII (3cdz)''' ==
<StructureSection load='3cdz' size='340' side='right' caption='The human coagulation factor VIII' scene=''>
<StructureSection load='3cdz' size='340' side='right' caption='The human coagulation factor VIII' scene=''>
'''The human Factor VIII''', also known as anti-hemophilic factor (AHF), is an essential blood-clotting protein <ref name="wikipedia">https://en.wikipedia.org/wiki/Factor_VIII [11.01.2019]</ref>. It consists of 2332 residues <ref name="Ngo">PMID: 18400180</ref>, whose gene is located on the X chromosome <ref name="wikipedia" /><ref name="Antonarakis">PMID: 8578479</ref>.  
'''The human Factor VIII''', also known as anti-hemophilic factor (AHF), is an essential blood-clotting protein <ref name="wikipedia">https://en.wikipedia.org/wiki/Factor_VIII [11.01.2019]</ref>. It consists of 2332 residues <ref name="Ngo">PMID: 18400180</ref>. Its gene is located on the X chromosome <ref name="wikipedia" /><ref name="Antonarakis">PMID: 8578479</ref>.  


Factor VIII is produced inside the liver (by the sinusoidal cells) and outside (by the endothelial cells) and acts in the intrinsic pathway of blood coagulation <ref name="wikipedia" />. It is actually the lack or the deficiency of the factor VIII (which is a plasma glycoprotein) that causes a bleeding disorder: hemophilia A <ref name="Ngo" />.
Factor VIII is produced inside the liver (by the sinusoidal cells) and outside (by the endothelial cells) and acts in the intrinsic pathway of blood coagulation <ref name="wikipedia" />. It is actually the lack or the deficiency of the factor VIII (which is a plasma glycoprotein) that causes a bleeding disorder: hemophilia A <ref name="Ngo" />.
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====Secondary Structure====
====Secondary Structure====
Factor VIII protein is composed of six globular domains: A<sub>1</sub>-A<sub>2</sub>-B-A<sub>3</sub>-C<sub>1</sub>-C<sub>2</sub> and contains one Ca<sup>2+</sup> and two Cu<sup>2+</sup> ions. It has a molecular weight of 330 kDa <ref name="Ngo" /><ref name="El" /><ref name="uni" />.
Factor VIII protein is composed of six globular domains: A<sub>1</sub>-A<sub>2</sub>-B-A<sub>3</sub>-C<sub>1</sub>-C<sub>2</sub> and contains one Ca<sup>2+</sup> and two Cu<sup>2+</sup> ions. It has a molecular weight of 330 kDa <ref name="Ngo" /><ref name="El" /><ref name="uni" />.
In the following, the structure of an engineered protein is further described. This protein has no B domain to mimic the active factor VIIIa. In addition, it is more amenable to structural studies because it shows higher stability expression levels and structural homogenity <ref name="Ngo" /><ref name="toole">Toole JJ, Pittman DD, Orr EC, Murtha P, Wasley LC & Kaufman RJ. A large region (approximately equal to 95 kDa) of human factor VIII is dispensable for ''in vitro'' procoagulant activity. Proceedings of the National Academy of Sciences. 1986 Aug; 83(16): 5939-5942. PMID: 3016730 doi  https://doi.org/10.1073/pnas.83.16.5939</ref>.


The three A domains are homologous to the A domains of the copper-binding protein [[Ceruloplasmin]] <ref name="wikipedia" /><ref name="El" />. Together, they form a triangular heterotrimer where the A<sub>1</sub> and A<sub>3</sub> domains interact with the C<sub>2</sub> and C<sub>1</sub> domains, respectively <ref name="Ngo" />.
The three A domains are homologous to the A domains of the copper-binding protein [[Ceruloplasmin]] <ref name="wikipedia" /><ref name="El" />. Together, they form a triangular heterotrimer where the A<sub>1</sub> and A<sub>3</sub> domains interact with the C<sub>2</sub> and C<sub>1</sub> domains, respectively <ref name="Ngo" />.
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The C domains belong to the phospholipid-binding discoidin domain family <ref name="wikipedia" />. They are adjacent at the base of the triangular heterotrimer. Moreover, C<sub>1</sub> and C<sub>2</sub> domains are structurally homologous and they have the ability to bind the membrane. Indeed, both C domain protrude three β-hairpin loops with hydrophobic and basic residues in the same direction. Thanks to these loops the factor VIII might interact with the phospholipid bilayer. <ref name="Ngo" />
The C domains belong to the phospholipid-binding discoidin domain family <ref name="wikipedia" />. They are adjacent at the base of the triangular heterotrimer. Moreover, C<sub>1</sub> and C<sub>2</sub> domains are structurally homologous and they have the ability to bind the membrane. Indeed, both C domain protrude three β-hairpin loops with hydrophobic and basic residues in the same direction. Thanks to these loops the factor VIII might interact with the phospholipid bilayer. <ref name="Ngo" />


Factor VIIIa is obtained by cleavage and release of the B domain <ref name="wikipedia" /><ref name="Ngo" /><ref name="toole">Toole JJ, Pittman DD, Orr EC, Murtha P, Wasley LC & Kaufman RJ. A large region (approximately equal to 95 kDa) of human factor VIII is dispensable for ''in vitro'' procoagulant activity. Proceedings of the National Academy of Sciences. 1986 Aug; 83(16): 5939-5942. PMID: 3016730 doi  https://doi.org/10.1073/pnas.83.16.5939</ref>. Although factor VIIIa can be formed from at least two cleavages involving Arg372 and Arg1689, fully active factor VIIIa is obtained only after a third cleavage at Arg740 <ref name="Ngo" />.
Factor VIIIa is obtained by cleavage and release of the B domain <ref name="wikipedia" /><ref name="Ngo" /><ref name="toole" />. Although factor VIIIa can be formed from at least two cleavages involving Arg372 and Arg1689, fully active factor VIIIa is obtained only after a third cleavage at Arg740 <ref name="Ngo" />.




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• The <scene name='80/802656/Light_chain/2'>light chain</scene> has a molecular weight of 80 kDa and is composed of 684 amino acids <ref name="Binhoreau" />. It contains two domains: a unique A domain of 371 amino acids and a duplicated C domain of 153 amino acids and 160 amino acids, respectively <ref name="Binhoreau" />. These domains are ranked in the following order A<sub>3</sub>-C<sub>1</sub>-C<sub>2</sub> <ref name="wikipedia" /><ref name="Binhoreau" />. It is composed of 42 % irregular structure, 36 % β-strands, and 22 % α-helices <ref name="Binhoreau" />. The C<sub>1</sub> and C<sub>2</sub> domains are defined by a distorted β barrel, while A<sub>3</sub>, as well as A<sub>1</sub> and A<sub>2</sub>, is composed of two connected β barrels <ref name="Ngo" />. This chain also contains of the major binding site of von Willebrand Factor at its N-terminus <ref name="Binhoreau" />.  
• The <scene name='80/802656/Light_chain/2'>light chain</scene> has a molecular weight of 80 kDa and is composed of 684 amino acids <ref name="Binhoreau" />. It contains two domains: a unique A domain of 371 amino acids and a duplicated C domain of 153 amino acids and 160 amino acids, respectively <ref name="Binhoreau" />. These domains are ranked in the following order A<sub>3</sub>-C<sub>1</sub>-C<sub>2</sub> <ref name="wikipedia" /><ref name="Binhoreau" />. It is composed of 42 % irregular structure, 36 % β-strands, and 22 % α-helices <ref name="Binhoreau" />. The C<sub>1</sub> and C<sub>2</sub> domains are defined by a distorted β barrel, while A<sub>3</sub>, as well as A<sub>1</sub> and A<sub>2</sub>, is composed of two connected β barrels <ref name="Ngo" />. This chain also contains of the major binding site of von Willebrand Factor at its N-terminus <ref name="Binhoreau" />.  
Figure 1: Domain organisation of the uncleaved coagulation factor VIII (top) and the engineered factor without B domain (bottom). (Figure adapted from <ref name="Ngo" />)
[[Image:Domain organisation factorVIII (un)cleaved.png]]


Both chains are non-covalently associated through to a calcium ion to form the active heterodimer <ref name="Ngo" /><ref name="Binhoreau" />. This complex is the pro-coagulant factor VIIIa <ref name="wikipedia" />.  
Both chains are non-covalently associated through to a calcium ion to form the active heterodimer <ref name="Ngo" /><ref name="Binhoreau" />. This complex is the pro-coagulant factor VIIIa <ref name="wikipedia" />.  
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====Ligands====
====Ligands====
Alpha-D-mannose, calcium ion (Ca<sup>2+</sup>), copper ion (Cu<sup>2+</sup>) and N-acetl-D-glucosamine are the four ligands the factor VIII is able to bind to <ref name="pdb" />.  
The calcium ion (Ca<sup>2+</sup>) and the copper ion (Cu<sup>2+</sup>) are both ligands the factor VIII is able to bind to <ref name="pdb" />. More precisely, in factor VIII there are two copper ions and their binding sites are located internally within the <scene name='80/802656/A3cu/1'>A3</scene> and the <scene name='80/802656/A1/1'>A1</scene> domain. The <scene name='80/802656/A1/1'>A1</scene> domain binds another ligand, a <scene name='80/802656/A1ca/1'>calcium ion</scene>, bound to its own binding site. <ref name="Ngo" />
In factor VIII there are two copper ions and their binding sites are located internally within the <scene name='80/802656/A3cu/1'>A3</scene> and the <scene name='80/802656/A1/1'> A1 </scene> domain. In the latter, there is another ligand, a <scene name='80/802656/A1ca/1'>single calcium ion</scene>, bound to its binding site <ref name="Ngo" />.
 
One other molecule can be found on this protein: N-acetyl-D-glucosamine. This molecule is covalently bound to Asn residues of the protein during the maturation process in the endoplasmic reticulum and the Golgi apparatus <ref name="Lenting">Lenting PJ, Pegon JN, Christophe OD, Denis CV. Factor VIII and von Willebrand factor – too sweet for their own good. Haemophilia. 2010 June; 16(Suppl. 5), 194–199. PMID: 20590881 doi: https://doi.org/10.1111/j.1365-2516.2010.02320.x</ref>. N-acetyl-D-glucosamine is not a ligand since it is not a specific substrate that binds a specific site in the protein. Indeed many proteins have such a glycolysation on their asparagine residues <ref name="Apweiler">Apweiler R, Hermjakob H,Sharon N.On the frequency of protein glycosylation, as deduced from analysis of the SWISS-PROT database.Biochimica et Biophysica Acta (BBA)-General Subjects.1999 Dec; 1473(1), 4-8.PMID: 10580125 doi: 10.1016/s0304-4165(99)00165-8</ref>. N-acetyl-D-glucosamine is a post-translational modifications and may be different depending on the physiological context <ref name="Helenius">Helenius A, Aebi M. Intracellular functions of N-linked glycans. Science. 2001 Mar, 291(5512), 2364-2369 doi:10.1126/science.291.5512.2364 </ref><ref>https://pubchem.ncbi.nlm.nih.gov/compound/439174 [25.06.2019]</ref>.
The alpha-D-mannose molecule, present in the structure shown here, might also be a posttranslational modification, since it is a sugar that can be establish N-type bonds<ref>https://en.wikipedia.org/wiki/Mannose [25.06.2019]</ref>. Factor VIII is thus a glycoprotein <ref name="Apweiler" />.
 




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====Inheritance====
====Inheritance====
Hemophilia A is inherited in an X-linked recessive manner. This means that if a son inherits an X chromosome carrying hemophilia from his mother, he will have hemophilia. By contrast, daughters, even if they inherit one hemophilia allele, they can compensate it with their second healthy X chromosome. As a result, women only rarely have symptoms, but women that are carriers, may pass the gene on to their children (50% chance per pregnancy) <ref name="Konkle" />.
Hemophilia A is inherited in an X-linked recessive manner. This means that if a son inherits an X chromosome carrying hemophilia from his mother, he will have hemophilia. By contrast, daughters, even if they inherit one hemophilia allele, can compensate it with their second healthy X chromosome. As a result, women only rarely have symptoms, but women that are carriers, may pass the gene on to their children (50% chance per pregnancy) <ref name="Konkle" />.




Figure1: Hemophilia Inheritance
Figure 2: Hemophilia Inheritance


[[Image:Hemophilia_inheritance.JPG|Hemophilia Inheritance]]
[[Image:Hemophilia_inheritance.JPG|Hemophilia Inheritance]]

Latest revision as of 19:04, 26 June 2019

Coagulation Factor VIII (3cdz)

The human coagulation factor VIII

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References