rRNA is a massive molecule consisting of two parts; a small section, and a large section. It is between these two sections that the mRNA fits, and into the large selection that the tRNA complexes (with attached amino acids) are taken. rRNA molecules have two main binding sites. When a tRNA molecule is bound, the mRNA molecule moves along one space, and another tRNA molecule binds. When this happens, the amino acids at the ends of the tRNA molecules are very close together, and a peptide bond forms. The mRNA then moves along again and the first tRNA molecule breaks away. This is translation
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DNA does not carry out its function in the ribosome. DNA's main function is to store genetic information, which is then transcribed into messenger RNA (mRNA) to be translated in the ribosome to produce proteins.
Ribosome RNA, or rRNA, refers to the RNA molecules found in ribosomes that help in protein synthesis. Ribosomes are cellular structures where protein translation occurs, with rRNA playing a crucial role in catalyzing peptide bond formation between amino acids during this process.
A ribosome is made up of two subunits, one larger and one smaller. These subunits are composed of ribosomal RNA (rRNA) and proteins. The rRNA provides the structural framework for the ribosome, while the proteins support its function in protein synthesis.
The four main types of RNA are messenger RNA (mRNA) which carries genetic information from DNA to the ribosome, transfer RNA (tRNA) which brings amino acids to the ribosome for protein synthesis, ribosomal RNA (rRNA) which is a component of the ribosome structure, and microRNA (miRNA) which regulates gene expression.
The three main kinds of RNA are messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). mRNA carries genetic information from the DNA to the ribosome for protein synthesis, tRNA brings amino acids to the ribosome during translation, and rRNA forms the core structure of the ribosome and catalyzes protein synthesis.
DNA does not carry out its function in the ribosome. DNA's main function is to store genetic information, which is then transcribed into messenger RNA (mRNA) to be translated in the ribosome to produce proteins.
in the ribosome
The RNA copies the genetic code, transfer RNA decodes the code, DNA gives the code for life, and ribosome reads and assembles the parts.HERE IS A VIDEO FOR MORE INFORMATION ON PROTEIN SYNTHESIS! http://www.youtube.com/watch?v=dIZpb93NYlw&feature=related
Transfer RNA performs its function in the cytoplasm. tRNA carries amino acids to the ribosome where protein synthesis occurs. The process of translation, where tRNA helps in adding the correct amino acid to growing polypeptide chains, takes place in the cytoplasm at the ribosome.
What is the function of a ribosome?
in the ribosome
Messenger RNA is matched with transfer RNA in the ribosome. The transfer RNA carries specific amino acids that correspond to the coding sequence on the mRNA. This process enables the ribosome to assemble the amino acids in the correct order to form a protein.
No. A ribosome is a complex of protein and RNA molecules found inside both prokaryotic and eukaryotic cells. Its function is to translate messenger RNA into protein.
Transfer RNA (tRNA)
Ribosome RNA, or rRNA, refers to the RNA molecules found in ribosomes that help in protein synthesis. Ribosomes are cellular structures where protein translation occurs, with rRNA playing a crucial role in catalyzing peptide bond formation between amino acids during this process.
A ribosome is made up of two subunits, one larger and one smaller. These subunits are composed of ribosomal RNA (rRNA) and proteins. The rRNA provides the structural framework for the ribosome, while the proteins support its function in protein synthesis.
The four main types of RNA are messenger RNA (mRNA) which carries genetic information from DNA to the ribosome, transfer RNA (tRNA) which brings amino acids to the ribosome for protein synthesis, ribosomal RNA (rRNA) which is a component of the ribosome structure, and microRNA (miRNA) which regulates gene expression.