Sandbox323: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
No edit summary
Line 110: Line 110:
The cold 4 degrees C reaction was changed to room temperature 20 degrees C. All other conditions remained constant to evaluate the effect of temperature on enzyme. Temperature increase negatively affects enzyme performance. Considering the cold loving nature of Chitinophaga pinensis, the enzyme being more active at a lower temperature is a reasonable conclusion.
The cold 4 degrees C reaction was changed to room temperature 20 degrees C. All other conditions remained constant to evaluate the effect of temperature on enzyme. Temperature increase negatively affects enzyme performance. Considering the cold loving nature of Chitinophaga pinensis, the enzyme being more active at a lower temperature is a reasonable conclusion.


[[Image:Roomtempconcentrationtime.png|600px|left|thumb|Enzyme Activity at neutral pH at room temperature with Chloride cofactor.]]
[[Image:Roomtempconcentrationtime.png|600px|right|thumb|Enzyme Activity at neutral pH at room temperature with Chloride cofactor.]]


[[Image:Sigfigroomtempenzymeactivity.png|600px|left|thumb|Enzyme Activity at neutral pH at room temperature with Chloride cofactor.]]
[[Image:Sigfigroomtempenzymeactivity.png|600px|right|thumb|Enzyme Activity at neutral pH at room temperature with Chloride cofactor.]]


[[Image:Enzyme units percentage increase.png|600px|left|thumb|4 degrees C yields 42.2% increase in Units of Enzyme Activity цmol/minute.]]
[[Image:Enzyme units percentage increase.png|600px|left|thumb|4 degrees C yields 42.2% increase in Units of Enzyme Activity цmol/minute.]]

Revision as of 15:46, 28 April 2025

Structural Analysis and Proposed Functionality of 4Q7Q

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.

3D Representation of 4Q7Q

Drag the structure with the mouse to rotate

References