00:01
Hello everyone in this question we have been asked about the allosteric regulator of glypogen.
00:07
So we know that glypogen synthane in its d fosbo -related form is active and it converts the udc glucose to glyp plus udc whereas when the glucose concentration is low, the protein kinase is a phosphorylation of glycogen phosphorylase kinase, and in its phosphorylated form, it is active, which for the phosphorylid cell glycogen phosphorylase, which will break down.
01:00
The glyphogen into glucose 1 phosphate and through the glute transport system the glucose will be entered to blood the glyphogen synthesis activity is regulated by phosphorylation and a listerically activated by the glucose 6thorbid the phosphorylation of 9 serenies by different planets regulates the glycogen synthesis for the glucose 6 -cosphosphate and its substrate that is the udb glucose.
01:44
So here a correct answer will be option a that is glucose 6 -cospate is an allostatic regulator of glycogen synchase.
01:55
Then in the next question we have been asked against the phantososphate pathway, which is also known as the higgsos monososphate artwork.
02:09
So in this pathway, the glucose 6 -phosphate is converted to 6 -4gluconolectone in which the 1 molecule of n .a .t.
02:25
Is reduced to n .a .d .e.
02:27
And when the 6 -posphoglycone electron is converted to 6 molecules of 6 to 6 -posphate 1 molecule of water gives of hydrogen molecules then this 6 -posphonuconate is converted to 3 keto 6 -posphoglycane and here also one molecule of n -a -d -p -plus is reduced to n -a -d -p -h.
03:05
Then this 3 -thetor -6 -poclec is converted to right below 5 phosphate with the release of carbon dioxide by the process of decarobsylation.
03:21
And then the phosphopentos isomaris converts to the phosphoportis, it into ribose 5 phosphate.
03:29
It is very necessary for the nad plus to be converted to n .a .d .h...