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DOGMA- GENE EXPRESSIONS

what are the cemplex under transcription initiation

TRANCRIPTION INITIATION, PRE-INITIATION AND OPEN COMPLEX

a strand that contains the code

SENSE STRAND

complementary DNA strands of the sense strand

ANTISENSE STRAND

explain transcription initiation complex

Gene starts with a promoter aka TATA box. Enzyme needed is RNA polymerase II. TATA box cant bind alone so it needs several proteins aka as Transcription Factors. Types are A,B,C,D,E,F,H.

explain pre-initiation complex

TFD will be the first to bind the TATA box because it has TATA box binding protein. Once bound, it will bend the promoter to 80 degrees to help the binding of A and B. A will stabilize D. B will interact with the TBP to recruit RNA polymerase II. F will assist the binding of RNA polymerase II to the promoter.

explain the open complex

E will bind to the pre-initiation complex and helps the binding of H. H will serve as a splitter because it has the ability to use ATP and acts like a helicase that splits the promoter

what facilitates the binding of the complementary RNA nucleotides in the Antisense strand

RNA POLYMERASE II

it removes terminal phosphate of the 5' nucleotide

RNA TRIPHOSPHATASE

it adds guanyl phosphate to the 5'

GUANYLYL TRANSFERASE

it adds methyl group to the gunanine nucleotide

METHYL TRANSFERASE

final structure formed in 5' cap during elongation that protects the pre-mRNA from degradation

METHYLGUANOSINE CAP

it cleaves the pre-mRNA and separates it from RNA polymerase II

CLEAVAGE STIMULATING FACTOR

it attaches to the pre-mRNA and recruits Poly A Polymerase

CLEAVAGE AND POLYADENYLATION SPECIFICITY FACTOR

it adds adenine residues to give rise to Poly A Tail

POLY A POLYMERASE

it binds to the Poly A to prevent 3' degradation

POLY A BINDING PROTEIN

also known as the coding sequence

EXONS

aka the non-coding sequence

INTRONS

cuts the introns and joins them with the remaining exons to form mature mRNA

SPLICEOSOME

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