21:58 The inactivation gate actually closes shut by a voltage-independent mechanism. The mechanism is that the inactivation gate's ball domain is positively charged, while the core of the open ion channel is negatively charged (E and D residues stabilize the passage of cations). As soon as the channel opens, the core is exposed, causing the positive inactivation gate to bind the negatively charged ionophore core. The timing of this is orchestrated by the the length of the chain (of the ball-and-chain model), an intrinsically disordered domain that confers a negative change in entropy (and thus less favorable free energy change) upon folding. As chains folding is necessary for ball binding, the the longer the chain length, the lower the binding affinity, and thus the longer the latency period before the channel is inactivated. Appropriately, this is termed the "enrtopy clock." It is apt, because entropy is what points the arrow of time.
@LastYak Жыл бұрын
Can you please upload the other content as well. Thank you for your knowledge.
@mohamadekrama Жыл бұрын
too good to be true thanks ... genuinely
@mmoney17124 жыл бұрын
Extremely helpful. Thank you for this!
@christopherapuan99682 жыл бұрын
Thank you so much 😅😆I did have a xan 13 minutes til I land!
@shaniw.47283 жыл бұрын
This is so helpful. Will you post anymore lecture videos soon?
@lilrabbitcuz3 жыл бұрын
No he’s going into neuro
@HT.1004 жыл бұрын
does this work for usmle as well?
@danmanmd4 жыл бұрын
It's a start if you're trying to develop a solid foundation, but there isn't nearly enough breadth and depth to consider it USMLE material
@HT.1004 жыл бұрын
@@danmanmd thanks for replying
@VyvienneEaux4 жыл бұрын
Ischemic is not the same as hypoxic. Ischemic refers to a lack of blood flow.
@danmanmd4 жыл бұрын
Correct, I misspoke. Hypoxia is the most significant result of ischemia, and ischemia is the most common cause of hypoxia.