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it is SO much easier to understand when you have a visual thank you
You can also check here.th-cam.com/video/JzRUEMEyPNo/w-d-xo.html/DNA_replication
Hands down the best video ever!
Best video ever to understand the dna replication. Thank u soo much.
dropping my major :)
Fantastic presentation and explanation. Thanks!
Super animation with good exaplanation
Best video ever. Thanks!
Very good explanation!
awesome animation!!! Thank you!
Thank you!
Is there a loop formation on the lagging strand?
thank you so much
Is ssb protein attaching at DNA bubble before the firmation of fork???
This is awesome thx!!!!
Amazing video,
I thought the RNA primers are cleaved by the 5'-3' exonuclease activity in DNA Polymerase I? 4:47
Thanks Bill Hader
Please fix the audio around 1:15. I don't understand what the proteins are releasing.
The helicase loader is released from the molecule, but the helicase ring remains and thus is able to perform its function in untwisting the strands of the double helix.
I'm so glad I'm thick.
best comment
THE BEST
Could this be the solution for nanobots
So the red ring is Okazaki fragment or the green ring is??
The real Okazaki fragments are the friends we made along the way.
The fuck?
That is so hard
Our God is a genius!
it is SO much easier to understand when you have a visual thank you
You can also check here.
th-cam.com/video/JzRUEMEyPNo/w-d-xo.html/DNA_replication
Hands down the best video ever!
Best video ever to understand the dna replication. Thank u soo much.
dropping my major :)
Fantastic presentation and explanation. Thanks!
Super animation with good exaplanation
Best video ever. Thanks!
Very good explanation!
awesome animation!!! Thank you!
Thank you!
Is there a loop formation on the lagging strand?
thank you so much
Is ssb protein attaching at DNA bubble before the firmation of fork???
This is awesome thx!!!!
Amazing video,
I thought the RNA primers are cleaved by the 5'-3' exonuclease activity in DNA Polymerase I? 4:47
Thanks Bill Hader
Please fix the audio around 1:15. I don't understand what the proteins are releasing.
The helicase loader is released from the molecule, but the helicase ring remains and thus is able to perform its function in untwisting the strands of the double helix.
I'm so glad I'm thick.
best comment
THE BEST
Could this be the solution for nanobots
So the red ring is Okazaki fragment or the green ring is??
The real Okazaki fragments are the friends we made along the way.
The fuck?
That is so hard
Our God is a genius!