An enzyme reacts with substrate S to produce P. E +SS ES → E + P The kinetic data for the activity of 0.01mM enzyme is shown below. The concentration of {S} is millimolar and reaction rate is...

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An enzyme reacts with substrate S to produce<br>P.<br>E +SS ES → E + P<br>The kinetic data for the activity of 0.01mM<br>enzyme is shown below. The concentration of<br>{S} is millimolar and reaction rate is millimolar<br>per second. Take this information down.<br>Produce a Lineweaver-Burke graph using the<br>data below, find the Km, find the Vm, and<br>calculate the kcat for this enzyme. Turn in a<br>single page with the graph (title, axes labels<br>and units, etc) and the values of Km, Vm, and<br>kcat (see the example image below)<br>Name: J Doe<br>Lineweaver-Burke Graph for Enzyme X<br>1/v<br>(s/mM)<br>1/s<br>(/mM)<br>K - ?<br>keat - ?<br>

Extracted text: An enzyme reacts with substrate S to produce P. E +SS ES → E + P The kinetic data for the activity of 0.01mM enzyme is shown below. The concentration of {S} is millimolar and reaction rate is millimolar per second. Take this information down. Produce a Lineweaver-Burke graph using the data below, find the Km, find the Vm, and calculate the kcat for this enzyme. Turn in a single page with the graph (title, axes labels and units, etc) and the values of Km, Vm, and kcat (see the example image below) Name: J Doe Lineweaver-Burke Graph for Enzyme X 1/v (s/mM) 1/s (/mM) K - ? keat - ?
{S}<br>V<br>10.00<br>71<br>50.00<br>300<br>200.00<br>750<br>400.00<br>1000<br>

Extracted text: {S} V 10.00 71 50.00 300 200.00 750 400.00 1000

Jun 11, 2022
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