Mechanism of transposition of retroviral transposons
10
Composite and noncomposite transposons
11
Cut and paste DNA transposition
12
Transposition of a poly A retrotransposon
13
Transposition of IS elements
14
IS elements
15
Ds and Ac transposable elements
16
Eukaryotic transcription part 1: introduction
17
Eukaryotic transcription part 2: Polymerase I mediated transcription
18
Eukaryotic transcrption part 3: polymerase II mediated transcription
19
Eukaryotic transcription part 4: Polymerase III mediated transcription
20
Eukaryotic transcription part 5: eukaryotic transcription summary and termination
21
RNA splicing part 1 (introduction)
22
RNA splicing part 2 (self splicing)
23
RNA splicing part 3 (spliceosome mediated splicing)
24
RNA splicing part 4 (classification)
25
Protein splicing
26
RNA modifications (synthesis of 5 prime cap)
27
RNA modifications: 5 prime cap
28
Polyadenylation of mRNA (poly a tail)
29
RNA editing: adenosine to inosine
30
RNA editing introduction
31
Guide RNA dependent RNA editing
32
RNA editing mechanism
33
RNA purification
34
Chromatin remodeling
35
DNA methylation
Description:
Explore eukaryotic molecular biology through a comprehensive video lecture series covering DNA and histone structures, genome organization, transposons, transcription processes, and RNA biology. Delve into topics such as nucleosome structure and modification, histone acetylation, genetic organization of LINE and SINE, transposable elements, eukaryotic transcription mechanisms, RNA splicing, RNA modifications, and chromatin remodeling. Gain a thorough understanding of essential concepts including DNA methylation, RNA editing, and polyadenylation of mRNA across 9 hours of in-depth content.