Thrombin: Difference between revisions

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<StructureSection load='1ppb' size='350' side='right' scene='' caption='Human thrombin large (red) and small (aqua) subunits complex with prolinamide derivative (PDB code [[1ppb]])'>
<StructureSection load='1ppb' size='350' side='right' scene='' caption='Human thrombin large (red) and small (aqua) subunits complex with prolinamide derivative (PDB code [[1ppb]])'>
==Introduction==
'''Thrombin''' (Thr) is a serine protease.  '''Prothrombin''' (PThr) is cleaved to form Thr in the coagulation cascade.  The first step of the cleavage is at residue R320 and produces '''meizothrombin''' (MThr). Thr catalyzes the conversion of fibrinogen to the insoluble fibrin.  Thr is composed of heavy chain (HC) and light chain (LC).  Prethrombin-1 lacks 155 N-terminal residues of PThr and is composed of a single polypeptide chain.  '''Prethrombin-2''' is the product of proteolysis of '''prethrombin-1''' by trypsin or by active factor X.  P-PACK Thr is a chemicaly modified Thr with inactivated catalytic site and active anion binding site.  Hirudin is the most potent natural inhibitor of Thr ([[Sean Swale/Human Thrombin Inhibitor]]).  For some more details see [[Serine Proteases]]. Prothrombin cleavage results in the creation of thrombin, a coagulative agent in plasma and is connected to fibrinolysis and platelet activation. During this process several peptides involved in the conversion are released into the plasma, and the remaining protein splits into two portions(http://www.uniprot.org/citations/3759958). It has been shown that prothrombin has a statistically significant connection to the occurrence of ischemic stroke with the presence of the G20210A mutation, though the cause was not isolated to prothrombin alone (http://www.uniprot.org/citations/15534175) (these links added by Connor Gramazio).  Some additional details in<br />
'''Thrombin''' (Thr) is a serine protease.  '''Prothrombin''' (PThr) is cleaved to form Thr in the coagulation cascade.  The first step of the cleavage is at residue R320 and produces '''meizothrombin''' (MThr). Thr catalyzes the conversion of fibrinogen to the insoluble fibrin.  Thr is composed of heavy chain (HC) and light chain (LC).  Prethrombin-1 lacks 155 N-terminal residues of PThr and is composed of a single polypeptide chain.  '''Prethrombin-2''' is the product of proteolysis of '''prethrombin-1''' by trypsin or by active factor X.  P-PACK Thr is a chemicaly modified Thr with inactivated catalytic site and active anion binding site.  Hirudin is the most potent natural inhibitor of Thr ([[Sean Swale/Human Thrombin Inhibitor]]).  For some more details see [[Serine Proteases]]. Prothrombin cleavage results in the creation of thrombin, a coagulative agent in plasma and is connected to fibrinolysis and platelet activation. During this process several peptides involved in the conversion are released into the plasma, and the remaining protein splits into two portions(http://www.uniprot.org/citations/3759958). It has been shown that prothrombin has a statistically significant connection to the occurrence of ischemic stroke with the presence of the G20210A mutation, though the cause was not isolated to prothrombin alone (http://www.uniprot.org/citations/15534175) (these links added by Connor Gramazio).  Some additional details in<br />
* [[Ann Taylor 115]]<br />
* [[Ann Taylor 115]]<br />
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* [[Thrombin light chain]]<br />
* [[Thrombin light chain]]<br />


==Structure==
<scene name='58/583418/Thombin_main_secondary/2'>Thrombin</scene> catalyzes the penultimate step in blood coagulation. It is activated from its [http://en.wikipedia.org/wiki/Zymogen zymogen], prothrombin, at the site of tissue injury by [[Factor_Xa | Factor Xa (FXa)]] and its cofactor [http://en.wikipedia.org/wiki/Factor_V FVa] in the presence of phospholipid membrane and calcium. Thrombin is then able to catalyze the cleavage of [[Fibrinogen | fibrinogen]] to insoluable fibrin which spontaneously polymerizes to form a stable clot.<ref name="zero">PMID: 7023326</ref><ref name="one">PMID: 11001069</ref> Thrombin also acts as a procoagulant by:
 
'''Thrombin''' is a "trypsin-like" serine protease.  Its structure (PDB code [[1ppb]]) is shown here with a peptide chloroketone inhibitor (PPACK).  The thrombin A chain (cleaved N terminal fragement) is shown in cyan and the B chain is shown in red.  The <scene name='Serine_Protease/Active_site/2'>Active site</scene> is made up of a catalytic triad of Ser195, His57 and Asp102, backed up by Ser214.  The peptide chloroketone inhibitor (PPACK) is shown in purple.  A closeup shows the <scene name='Serine_Protease/Activation_site/2'>activation site</scene> at which the sidechain of Asp194 makes a salt link with the N-terminus at residue 16, newly formed when the A chain is cleaved in the zymogen-to-enzyme activation process.  The specificity pocket is on one side of the throat of the domain 2 beta 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'>
==Introduction==
<scene name='58/583418/Thombin_main_secondary/2'>Thrombin</scene> is the serine protease that catalyzes the penultimate step in blood coagulation. It is activated from its [http://en.wikipedia.org/wiki/Zymogen zymogen], prothrombin, at the site of tissue injury by [[Factor_Xa | Factor Xa (FXa)]] and its cofactor [http://en.wikipedia.org/wiki/Factor_V FVa] in the presence of phospholipid membrane and calcium. Thrombin is then able to catalyze the cleavage of [[Fibrinogen | fibrinogen]] to insoluable fibrin which spontaneously polymerizes to form a stable clot.<ref name="zero">PMID: 7023326</ref><ref name="one">PMID: 11001069</ref> Thrombin also acts as a procoagulant by:


* Activating platelets through their [http://en.wikipedia.org/wiki/Protease-activated_receptor protease activated receptors (PARs)]<ref name="one"/>  
* Activating platelets through their [http://en.wikipedia.org/wiki/Protease-activated_receptor protease activated receptors (PARs)]<ref name="one"/>  
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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.]]
==Structure==
'''Thrombin''' is a "trypsin-like" serine protease.  Its structure (PDB code [[1ppb]]) is shown here with a peptide chloroketone inhibitor (PPACK).  The thrombin A chain (cleaved N terminal fragement) is shown in cyan and the B chain is shown in red.  The <scene name='Serine_Protease/Active_site/2'>Active site</scene> is made up of a catalytic triad of Ser195, His57 and Asp102, backed up by Ser214.  The peptide chloroketone inhibitor (PPACK) is shown in purple.  A closeup shows the <scene name='Serine_Protease/Activation_site/2'>activation site</scene> at which the sidechain of Asp194 makes a salt link with the N-terminus at residue 16, newly formed when the A chain is cleaved in the zymogen-to-enzyme activation process.  The specificity pocket is on one side of the throat of the domain 2 beta 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'>





Revision as of 07:47, 25 January 2016

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

Drag the structure with the mouse to rotate

3D Structures of thrombin

Updated on 25-January-2016

With participation by Cody Couperus

References

Proteopedia Page Contributors and Editors (what is this?)

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