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gene expression… from DNA to protein
gene expression… from DNA to protein

... • Why do introns exist? – May regulate gene activity – Splicing may regulate export of mRNA to cytoplasm – Introns cause exons to be further apart, and therefore to be further away from each other on the chromosome: this could mean a higher probability of recombination during cross-over – Specific ...
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... 6. Identify the number of chromosomes in human haploid cells, diploid cells, sex cells, gametes, and somatic cells. 7. What is the meaning of n and 2n? 8. How is a zygote formed? 9. What is the chromosome # in a zygote? Why or how? 10. Compare parent and daughter cells before and after mitosis (disc ...
Preview from Notesale.co.uk Page 4 of 14
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... initiation complex Elongation: The aminoacyl tRNA binds to the A site and peptide bonds are formed between the amino acid in the P site and A site by peptidyl transferase and the amino acid it transferred to the tRNA in the A site and the tRNAs move through like a conveyer belt. Translocation: w ...
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... – Upstream promoter element (UPE) 100 bp farther upstream – Spacing between these elements is important ...
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Primary transcript



A primary transcript is the single-stranded ribonucleic acid (RNA) product synthesized by transcription of DNA, and processed to yield various mature RNA products such as mRNAs, tRNAs, and rRNAs. The primary transcripts designated to be mRNAs are modified in preparation for translation. For example, a precursor messenger RNA (pre-mRNA) is a type of primary transcript that becomes a messenger RNA (mRNA) after processing.There are several steps contributing to the production of primary transcripts. All these steps involve a series of interactions to initiate and complete the transcription of DNA in the nucleus of eukaryotes. Certain factors play key roles in the activation and inhibition of transcription, where they regulate primary transcript production. Transcription produces primary transcripts that are further modified by several processes. These processes include the 5' cap, 3'-polyadenylation, and alternative splicing. In particular, alternative splicing directly contributes to the diversity of mRNA found in cells. The modifications of primary transcripts have been further studied in research seeking greater knowledge of the role and significance of these transcripts. Experimental studies based on molecular changes to primary transcripts the processes before and after transcription have led to greater understanding of diseases involving primary transcripts.
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