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[[Image:Enzyme units percentage increase.png|700px|left|thumb|4 degrees C yields 42.2% increase in Units of Enzyme Activity цmol/minute ]]
[[Image:Enzyme units percentage increase.png|700px|left|thumb|4 degrees C yields 42.2% increase in Units of Enzyme Activity цmol/minute ]]
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===Discussion and Conclusion===
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42.2% increase in units of enzyme activity was a considerable gain. No replicates were done for this study. A future experiment would include replicates so t-test can be run to determine significance of the increase. Overall the temperature decrease had an effect on the conversion of PNPA to PNP.
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A comparison model is the thermostable esterase from the moderate thermophile Bacillus circulans. Esterase activity was associated with a protein of molecular mass 95 kDa, composed of three identical subunits of 30 kDa. The esterase activity was thermostable with a maximum activity at 55 °C using PNPA assay. Literature reported units of enzyme activity in umol/minute at rate 790% greater than 4q7q. Taken as a comparison model, 4q7q rate is quite slow.<ref name="Thermo">Kademi, A.; Ait-Abdelkader, N.; Fakhreddine, L.; Baratti, J. Purification and characterization of a thermostable esterase from the moderate thermophile Bacillus circulans. Appl. Microbiol. Biotechnol., 2000, 54(1), 173-179, https://doi.org/10.1007/s002530000353</ref>
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The role of the chloride cofactor was not investigated thoroughly. Chloride ion was present in all reaction conditions, so it's independence was not tested. A future experiment would be testing the functionality of the enzyme without chloride in solution compared to with chloride ion.
== References ==
== References ==
<references/>
<references/>

Revision as of 15:24, 28 April 2025

4Q7Q Structure and Proposed Functionality

(NOTE TO ALL EDITORS: This page is part of a final project for a biochemistry lab at Elizabethtown College. Please do not edit this. -Neil Divins)

4Q7Q is a homodimeric protein complex that originates from the bacterial species Chitinophaga Pinensis and has a mass of 58.5 kDa. It is a member of the SGNH Hydrolase Superfamily with structural and sequential similarities to esterases and lipases. Current evidence suggests it causes the hydrolysis of esters and/or acetyl groups on lipids/lipid-like molecules via a catalytic triad-like active site.

PDB ID 4Q7Q

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