Thrombin: Difference between revisions

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By balancing substrate specificity, activity, and inhibition thrombin plays a central role in the blood coagulation cascade. <ref name="three"/>  
By balancing substrate specificity, activity, and inhibition thrombin plays a central role in the blood coagulation cascade. <ref name="three"/>  
[[Image:Substrates.png|300px|center|thumb| Coagulation related substrates of thrombin, excluding serpin inhibitors.]]
[[Image:Substrates.png|300px|center|thumb| Coagulation related substrates of thrombin, excluding serpin inhibitors.]]
 
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==The Thrombin Life Cycle==
==The Thrombin Life Cycle==
Upon tissue damage [http://en.wikipedia.org/wiki/Tissue_factor tissue factor (TF)] is released by subendothelial cells. This interacts with circulating [[Factor_VII| FVIIa]], a zymogen-like serine protease, significantly increasing its activity. '''The FVIIa-TF complex (extrinsic Xase) activates FVII, FIX, and FX'''. The now active '''FXa cleaves prothrombin''' bound to membranes through its [http://en.wikipedia.org/wiki/Gla_domain gamma-carboxyglutamyl (Gla) domain], activating it to thrombin.  
Upon tissue damage [http://en.wikipedia.org/wiki/Tissue_factor tissue factor (TF)] is released by subendothelial cells. This interacts with circulating [[Factor_VII| FVIIa]], a zymogen-like serine protease, significantly increasing its activity. '''The FVIIa-TF complex (extrinsic Xase) activates FVII, FIX, and FX'''. The now active '''FXa cleaves prothrombin''' bound to membranes through its [http://en.wikipedia.org/wiki/Gla_domain gamma-carboxyglutamyl (Gla) domain], activating it to thrombin.  
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==Prothrombin Activation==
==Prothrombin Activation==
[[Image:Prothrombin activation scheme_3.png|300px|right|thumb| Activation scheme of in vivo activation of prothrombin by FXa in the absence of FVa.]]
[[Image:Prothrombin activation scheme_3.png|300px|left|thumb| Activation scheme of in vivo activation of prothrombin by FXa in the absence of FVa.]]
[[Image:Prothrombin activation scheme_nofva3.png|300px|right|thumb| Activation scheme of in vivo activation of prothrombin by the prothrombinase complex in presence of calcium and a phospholipid bilayer]]
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[[Image:Prothrombin activation scheme_nofva3.png|300px|left|thumb| Activation scheme of in vivo activation of prothrombin by the prothrombinase complex in presence of calcium and a phospholipid bilayer]]
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Prothrombin is the zymogen form of thrombin. From N-terminal to C-terminal it consists of a Gla domain, two kringle domains, and a catalytic domain. The Gla domain is formed by vitamin K dependent carboxylation of glutamate residues.<ref>PMID: 18374193</ref>  
Prothrombin is the zymogen form of thrombin. From N-terminal to C-terminal it consists of a Gla domain, two kringle domains, and a catalytic domain. The Gla domain is formed by vitamin K dependent carboxylation of glutamate residues.<ref>PMID: 18374193</ref>  


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[[Image:Electrostatic labeled.png|300px|right|thumb| Thrombin (1PPB) overlayed with electrostatic surface. Structural features 60-loop, γ-loop, exosite I, and exosite II labeled]]
[[Image:Electrostatic labeled.png|300px|right|thumb| Thrombin (1PPB) overlayed with electrostatic surface. Structural features 60-loop, γ-loop, exosite I, and exosite II labeled]]
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Thrombin is a α/β heterodimer composed of a 36 amino acid A chain and 259 amino acid B chain connected by a <scene name='58/583418/Disulfides_nospin/1'>disufide</scene> bridge between Cys1 and Cys122, in addition to 3 other intrachain disulfide bonds.<ref name='eight'>PMID: 2583108</ref> Its overall fold is similar to trypsin and chymotrypsin and it belongs to the [http://merops.sanger.ac.uk/cgi-bin/famsum?family=s1 peptidase S1 protease family]<ref>PMID: 18768474</ref>. It is an overall spherical protein with approximate dimensions of 45 Å X 45 Å X 50 Å.<ref name='eight'/>
Thrombin is a α/β heterodimer composed of a 36 amino acid A chain and 259 amino acid B chain connected by a <scene name='58/583418/Disulfides_nospin/1'>disufide</scene> bridge between Cys1 and Cys122, in addition to 3 other intrachain disulfide bonds.<ref name='eight'>PMID: 2583108</ref> Its overall fold is similar to trypsin and chymotrypsin and it belongs to the [http://merops.sanger.ac.uk/cgi-bin/famsum?family=s1 peptidase S1 protease family]<ref>PMID: 18768474</ref>. It is an overall spherical protein with approximate dimensions of 45 Å X 45 Å X 50 Å.<ref name='eight'/>
Important structural features include:
Important structural features include:
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The B chain consists of <scene name='Serine_Protease/Domains/1'>two domains</scene>.  As is true for all of the "trypsin-like" serine proteases, each of the two thrombin domains consists mainly of a 6-stranded, antiparallel beta barrel.  The specificity pocket (here filled with the Lys sidechain of the PPACK inhibitor) is in one side of the throat of the domain 2beta barrel, and the activation site is close next to it.
The B chain consists of <scene name='Serine_Protease/Domains/1'>two domains</scene>.  As is true for all of the "trypsin-like" serine proteases, each of the two thrombin domains consists mainly of a 6-stranded, antiparallel beta barrel.  The specificity pocket (here filled with the Lys sidechain of the PPACK inhibitor) is in one side of the throat of the domain 2beta barrel, and the activation site is close next to it.


Active site residues Ser195, Asp102, and His57 are viewed in ball and stick form.' scene='58/583418/Thombin_main_secondary/2'>
 
==Allostery==
==Allostery==


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[[Image:Capping.png|450px|center|thumb| “Capping box” motif in alpha thrombin (PDB: 1PPB) represented by His230 (Ncap) side chain and main chain hydrogen bonded with the backbone nitrogen of Arg233 (N3). An additional feature is a weak hydrophobic interaction between Thr229 (N’) and Val234 (N4) termed the “hydrophobic staple.” This motif derives it’s name from the box shaped hydrogen bonding pattern.]]
[[Image:Capping.png|450px|center|thumb| “Capping box” motif in alpha thrombin (PDB: 1PPB) represented by His230 (Ncap) side chain and main chain hydrogen bonded with the backbone nitrogen of Arg233 (N3). An additional feature is a weak hydrophobic interaction between Thr229 (N’) and Val234 (N4) termed the “hydrophobic staple.” This motif derives it’s name from the box shaped hydrogen bonding pattern.]]
 
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[[Image:Cation pi.png|450px|center|thumb| A cation-π interaction between Trp128 and Arg 129 in alpha thrombin (PDB: 2BDY). The guanidinium carbon is 3.6 angstroms from the top edge of the Trp. It is expected that the epsilon nitrogen forms the primary cation-π interaction. The electrostatic and Van der Waals interaction energies were calculated to be -3.29 kcal/mol and -3.08 kcal/mol respectively by the CaPTURE program (http://capture.caltech.edu/result.cgi).]]
[[Image:Cation pi.png|450px|center|thumb| A cation-π interaction between Trp128 and Arg 129 in alpha thrombin (PDB: 2BDY). The guanidinium carbon is 3.6 angstroms from the top edge of the Trp. It is expected that the epsilon nitrogen forms the primary cation-π interaction. The electrostatic and Van der Waals interaction energies were calculated to be -3.29 kcal/mol and -3.08 kcal/mol respectively by the CaPTURE program (http://capture.caltech.edu/result.cgi).]]
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</StructureSection>
</StructureSection>



Revision as of 07:56, 25 January 2016

Human thrombin large (red) and small (aqua) subunits complex with prolinamide derivative (PDB code 1ppb)

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3D Structures of thrombin

Updated on 25-January-2016

References

With participation by User:Cody Couperus

Proteopedia Page Contributors and Editors (what is this?)

Cody Couperus, Michal Harel, Alexander Berchansky, Joel L. Sussman