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  2. Ribosome - Wikipedia

    en.wikipedia.org/wiki/Ribosome

    Ribosomes can be found floating within the cytoplasm or attached to the endoplasmic reticulum. Their main function is to convert genetic code into an amino acid sequence and to build protein polymers from amino acid monomers. Ribosomes act as catalysts in two extremely important biological processes called peptidyl transfer and peptidyl hydrolysis.

  3. Eukaryotic ribosome - Wikipedia

    en.wikipedia.org/wiki/Eukaryotic_ribosome

    Ribosomes from all organisms share a highly conserved catalytic center. However, the ribosomes of eukaryotes (animals, plants, fungi, and large number unicellular organisms all with a nucleus) are much larger than prokaryotic (bacterial and archaeal) ribosomes and subject to more complex regulation and biogenesis pathways.

  4. Ribosomal RNA - Wikipedia

    en.wikipedia.org/wiki/Ribosomal_RNA

    The ribosome catalyzes ester-amide exchange, transferring the C-terminus of a nascent peptide from a tRNA to the amine of an amino acid. These processes are able to occur due to sites within the ribosome in which these molecules can bind, formed by the rRNA stem-loops. A ribosome has three of these binding sites called the A, P and E sites:

  5. Translation (biology) - Wikipedia

    en.wikipedia.org/wiki/Translation_(biology)

    In particular, ribosome profiling, which is a powerful method, [20] enables researchers to take a snapshot of all the proteins being translated at a given time, showing which parts of the mRNA are being translated into proteins by ribosomes at a given time. This method is useful because it looks at all the mRNAs instead of using reporters that ...

  6. Ribosome biogenesis - Wikipedia

    en.wikipedia.org/wiki/Ribosome_biogenesis

    Ribosome biogenesis is a very tightly regulated process, and it is closely linked to other cellular activities like growth and division. [3] [4] Some have speculated that in the origin of life, ribosome biogenesis predates cells, and that genes and cells evolved to enhance the reproductive capacity of ribosomes. [5]

  7. Biomolecule - Wikipedia

    en.wikipedia.org/wiki/Biomolecule

    Examples are tRNA, ribosomes, ribozymes, and riboswitches. These complex structures are facilitated by the fact that RNA backbone has less local flexibility than DNA but a large set of distinct conformations, apparently because of both positive and negative interactions of the extra OH on the ribose. [ 9 ]

  8. Macromolecular assembly - Wikipedia

    en.wikipedia.org/wiki/Macromolecular_assembly

    Virus structures were among the first studied MAs; other biologic examples include ribosomes (partial image above), proteasomes, and translation complexes (with protein and nucleic acid components), procaryotic and eukaryotic transcription complexes, and nuclear and other biological pores that allow material passage between cells and cellular ...

  9. Non-coding RNA - Wikipedia

    en.wikipedia.org/wiki/Non-coding_RNA

    Ribonucleoprotein (RNP) particles called ribosomes are the 'factories' where translation takes place in the cell. The ribosome consists of more than 60% ribosomal RNA; these are made up of 3 ncRNAs in prokaryotes and 4 ncRNAs in eukaryotes. Ribosomal RNAs catalyse the translation of nucleotide sequences to protein.