Thank you so much!!! It was quite difficult to find a video that explained how to calculate Ki from fixed inhibitor concentration while substrate concentration is used as x. Finally got it. Thanks!!
hi 🙋♂️ thank you so much for the video. it helps me so much to understand about inhibition constant, but how about uncompetitive inhibition? I'm still a little confused about how to calculate inhibition constant for the uncompetitive inhibition.
Yes, in a perfect scenario where alpha impacts Km and Vmax equally. I would expect this to be the case for most instances you'd see in a biochemistry course.
Thank you so much!!! It was quite difficult to find a video that explained how to calculate Ki from fixed inhibitor concentration while substrate concentration is used as x. Finally got it. Thanks!!
thank you so much. I was so confused on alpha and Ki values. literally a life saver for the lab report I have due in two days.
Thanks. You salvaged my grade in engineering biology.
Nice explanation. Thank you. Subscribed.
So understandable!!! Thanks so much!!
Thanks so much for these. It just saved me
hi 🙋♂️ thank you so much for the video. it helps me so much to understand about inhibition constant, but how about uncompetitive inhibition? I'm still a little confused about how to calculate inhibition constant for the uncompetitive inhibition.
Thank you! Test tomorrow wish me luck
what about if its a mixed inhibitor? to calculate alpha can we use either the non-comp way or comp-way to finding the alpha?
Yes, in a perfect scenario where alpha impacts Km and Vmax equally. I would expect this to be the case for most instances you'd see in a biochemistry course.
Thanks! What about a Uncompetitive inhibitor?
Muy buen video..excelente explicación..!!!!
I like that video~ Thank you so much.
I don't understand how KI is 6.9 for the competitive inhibitor?
In this example, alpha was determined to be 2.45. So doing a little algebra: 1.45 = 10/Ki. --->. 10/1.45 = Ki = 6.9
Thank you SO much. Saved me hours of reading a text just to not get anywhere lol
Thank you sooooo much...😊👌
thank you !
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