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Summary Molecular Biology of the Cell - PART II, Master Biomedical Sciences, University of Amsterdam $4.81   Add to cart

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Summary Molecular Biology of the Cell - PART II, Master Biomedical Sciences, University of Amsterdam

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Summary of lectures of the mastercourse Molecular Biology of the Cell - PART II: lectures of Stanley Brul. Master Biomedical Sciences - Medical Biology, University of Amsterdam

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  • September 28, 2017
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  • 2017/2018
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Molecular Biology of the Cell – PART II


Stanley Brul – Proteins

Eukaryotes: protein synthesis in cytosol, mRNA synthesis in nucleus

Proteins need to be targeted with high specificity to cellular sites

Amino acid characteristics:

- Negative side chains: aspartic acid, glutamic acid (acids)
- Positive: arginine, lysine, histidine (basic)
- Uncharged polar: asparagine, glutamine, serine, threonine, tyrosine
- Nonpolar: alanine, glycine, valine, leucine, isoleucine, proline, phenylalanine, methionine,
tryptophan, cysteine

,Amino acids encoded by triplets in the mRNA:

- 29 tRNAs plus 16 wobble tRNAs
- Always read from 5’ to 3’ > for example:
• Leucine triplet in DNA strand: 5’-TAA-3’
• Leucine triplet in mRNA (codon): 5’-UUA-3’
• Leucine triplet in tRNA (anti-codon): 5’-UAA-3’
- 5’ to 3’ synthesis of DNA and RNA driven by editing function
(proofreading) of polymerases and energy needs of synthesis:

,Amino acids can be non-essential, essential and strictly essential:

- 9 (strictly) essential amino acids:
• Basic: lysine (K), histidine (H)
• Uncharged polar: threonine (T)
• Nonpolar: valine (V), methionine (M), tryptophan (W), leucine (L), isoleucine (I),
phenylalanine (F)
➢ Mnemonic: Very Frequently I Work Like Mr T.K. Haris (VFIWLMTKH)

Proline:

- No primary amino acid > imino acid (C=NH instead of NH2)
- Helix breaker (hinge) > often present at domain edges

, Amino acids formed post-translationally:




Peptide bond formed between amino-terminus (NH2) of amino acid bound to the tRNA and the carboxy-
terminus (COO) of the nascent chain




Polypeptide chain folds as it grows:




Proteins can reversibly fold and unfold into tertiary conformation:

- Hydrophobic core region contains nonpolar side chains
- Cells will respond to proteins in which hydrophobic groups are exposed
- Folding determined by inter- and intra-molecular interactions (electrostatic attractions,
hydrogen bonds, van der Waals attractions)

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