Sandbox 35: Difference between revisions
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==Catalytic Mechanism== | ==Catalytic Mechanism== | ||
[[Image:Papainmech6.jpg|200px|left|thumb| General mechanism of papain catalysis<ref>[http://chemistry.umeche.maine.edu/CHY431/Peptidase10.html] University of Maine</ref>.]] | |||
Papain's catalytic mechanism is like serine proteases. Its catalytic triad of residues Cys 25- His159- Arg-175 appear to work with a fourth residue, Gln-19, suspected to be involved in oxyanion hole formation. When a peptide binds to the active site, His-159 deprotonates Cys-25 which in turn attacks the substrate carbonyl carbon. The oxyanion hole then stabilizes the resultant covalent, tetrahedral intermediate. Subsequently, nitrogen in the peptide bond in protonated by His-159 (acting as an acid). This action frees the C-terminal portion of the peptide so that it is released. The entrance of water into the active site then attacks the carbonyl carbon while it is deprotonated by His-159, resulting in another tetrahedral covalent intermediate stabilized through the oxyanion hole. At the end, carbonyl reformation and the Cys-25 sulfur action as the leaving group releases the N-terminal portion of the peptide and later renegerates the enzyme. <ref>[http://chemistry.umeche.maine.edu/CHY431/Peptidase10.html] University of Maine</ref> | |||
Revision as of 03:47, 14 November 2011
Please do NOT make changes to this Sandbox. Sandboxes 30-60 are reserved for use by Biochemistry 410 & 412 at Messiah College taught by Dr. Hannah Tims during Fall 2012 and Spring 2013.
PapainIntroductionDID YOU KNOW? Papain. Meat tenderizer. Old time home remedy for insect, jellyfish, and stingray stings[1]. Who would have thought that a sulfhydryl protease from the latex of the papaya fruit, Carica papaya and Vasconcellea cundinamarcensis would have such a practical application beyond proteopedia?
This protease belongs to an extended family of aminopeptidases, dipeptidyl peptidases, endopeptidases, and other enzymes having both exo- and endo-peptidase activity. The inactivated zymogen with N-terminal propeptide regions - providing stability in alkaline environments and enabling proper folding - is activated through removal of the propeptide regions. [2][3]
StructurePapain's polypeptide chain consists of 212 amino acid residues which fold to form a groove containing the active site between its two domains. Its secondary structure consists of 17 beta sheet strands and 7 alpha helices giving it a composition 21% and 25% respectively. [4] The hydrogen bonds within the alpha helices are shorter than the typical alpha helix because of C=O being directed further away from the helical axis. Moreover, the beta sheet hydrogen bonding constraints and structural angles show great variation; hydrogen bonds in the sheets' central tend to be shorter than on the fringes. Three disulfide bonds, for example Cys 22-Cys 63, serve to hold papain's tertiary structure together. [5]
Distribution of ResiduesAlthough Papain has a scattered distribution of acidic and basic residues, it can be seen to have more basic residues than acidic, shedding understanding into the application of its use as a digestive supplement. [11] Seeing its polar and non-polar residues further shows polar residues remaining mostly on the exterior while non-polar residues sequestering near the center. Observations have revealed that the proteins atomic positions are more ordered going from outside toward the center and also disclose the hydrophobic core of the enzyme. [12] Ligands interactions and Pseudo SubstratesPapain is said to have 29 methanol molecules that encircle around it as ligands. The polarity of the ligands result in hydrogen bonding interactions, possibly providing further stability for papain structure. [13]
Catalytic Mechanism
Fun TriviaRemember the 2002 SARS (Severe Acute Respiratory Syndrome) epidemic that placed global health in a precarious state? On-going research is happening to further understand the mechanisms of this coronavirus so that future steps can be taken for prevention. Its been found that the replication of RNA for this virus is mediated by two viral proteases that have many papain-like characteristics. [17]
References
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