00:01
Other students today we're going to be discussing about if fifos can be used for molecules that can be reversible or irreversible in regards to a chapter of glycogen metabolism.
00:14
And right here, i just want to explain more about this word that, trust me, i study this word and i still might pronounce it wrong, phosphorylase, how the breakdown is basically the written version of, this molecule version right here, so i'm basically saying the same thing, how the glycogen, which is just your end residue, how is catalyzed by a phosphoralis.
00:45
And when this catalyization happens, this is how you get glucose 1 phosphate or the shorthand g1p and also another by product of glycogen, which is in one.
01:01
Residue, which we wrote down here.
01:04
And with this process, we've heard of hydrolysis, whereas basically you use the water to cut the molecules in half.
01:14
When in this case, what we have going on is a phosphorylysis.
01:20
I hope i said it right, because it sounds like i could be saying it right.
01:23
But anyhow, which is basically the same thing, but you're using an inorganic phosphate, which is why you see the pi that you saw earlier up here.
01:38
Yeah, so that's why we, that's why you use like, so it's cut with an inorganic, an organic phosphate and i just write down the chemical breakdown, which is basically me repeating myself over and over again...