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1
Central dogma (replication, transcription and translation)
2
DNA replication 1 | process of DNA duplication
3
DNA polymerase proofreading
4
DNA polymerization | nucleotide addition during DNA synthesis
5
Clamp loader and sliding clamp
6
DNA clamp loader and primase
7
DNA polymerization by DNA polymerase 1
8
DNA methylation in DNA replication regulation
9
DNA Replication initiation
10
Lagging strand synthesis
11
Termination of DNA replication in E.coli
12
DNA footprinting experiment
13
DNase footprinting
14
TRANSCRIPTION 01
15
RNA polymerase detail
16
RNA processing
17
Protein synthesis in prokaryotes
18
Protein synthesis process
19
Lac operon concept class 12
20
Lac operon repression - lac repressor
21
Lac operon regulation
22
DNA replication initiation in E coli
23
DNA rolling circle replication
24
Rolling circle replication advanced
25
D loop replication
26
Pan handle model of DNA replication
27
Replication of single stranded plasmids
28
Copy number control in plasmids
29
Copy number regulation by cop genes
30
Multiple copy number plasmids
31
Low copy number plasmids
32
Iteron mediated copy number control
33
Copy number control of f plasmids
Description:
Dive into the fundamental concepts of molecular biology with this comprehensive video series. Explore the central dogma of molecular biology, including DNA replication, transcription, and translation. Learn about DNA polymerase proofreading, nucleotide addition during DNA synthesis, and the roles of clamp loaders and sliding clamps. Discover the intricacies of DNA methylation, replication initiation, lagging strand synthesis, and termination in E. coli. Understand DNA footprinting experiments and DNase footprinting techniques. Delve into transcription processes, RNA polymerase details, and RNA processing. Examine protein synthesis in prokaryotes and the lac operon concept and regulation. Investigate various DNA replication mechanisms, including rolling circle replication, D-loop replication, and the pan handle model. Study plasmid replication, copy number control, and regulation by cop genes and iterons. Gain insights into multiple copy number plasmids, low copy number plasmids, and copy number control of F plasmids. Read more

Shomu's Molecular Biology Basic

Shomu's Biology
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