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During the process of translation, messenger RNA (mRNA) is read by ribosomes, which are cellular structures that assemble amino acids into a protein chain based on the instructions provided by the mRNA. Transfer RNA (tRNA) molecules bring specific amino acids to the ribosome, where they are added to the growing protein chain according to the sequence of codons on the mRNA. This process continues until a stop codon is reached, signaling the completion of protein synthesis.

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What is the correct order dna-RNA-protein or dna-protein-RNA or RNA-protein-dna?

It's DNA - RNA - protein. DNA encoding a gene is transcribed to mRNA or messenger RNA by RNA polymerase. The RNA is then translated into a protein sequences at the ribosome. tRNA's or transfer RNA's act like a dictionary for the translation. They can recognize a code of three nucleotides (a codon) in the RNA and bring the corresponding amino acid to the right place at the ribosome, where it is ligated to the rest of the protein. A protein is a chain of amino acids. see http://en.wikipedia.org/wiki/Central_dogma


How is RNA translated into proteins in the process of protein synthesis?

During protein synthesis, RNA is translated into proteins through a process involving ribosomes and transfer RNA (tRNA). The ribosome reads the messenger RNA (mRNA) sequence and matches it with the corresponding tRNA carrying specific amino acids. These amino acids are then linked together to form a protein chain according to the mRNA sequence. This process continues until the entire mRNA sequence is translated into a protein.


Is usually found in the nucleus but moves into the cytoplasm.?

A protein called RNA polymerase is usually found in the nucleus where it transcribes DNA into RNA. Once transcribed, the RNA molecule moves into the cytoplasm where it can be translated into a protein by ribosomes.


What is one form of RNA that that serves as a template for protein synthesis It is transcribed from DNA and then translated at ribosomes to produce a protein?

Messenger RNA (mRNA) is the form of RNA that serves as a template for protein synthesis. It is transcribed from DNA inside the nucleus and carries the genetic information to the ribosomes in the cytoplasm where translation occurs to produce proteins.


How is RNA translated from 5' to 3' direction in the process of protein synthesis?

During protein synthesis, RNA is translated from 5' to 3' direction by the ribosome, which reads the mRNA in a sequential manner starting from the 5' end and moving towards the 3' end. This process ensures that the amino acids are added in the correct order to form a functional protein.

Related Questions

What can be translated into a protein?

Messenger RNA is translated to form proteins .


How is RNA translated and where?

RNA transcribed in nucleus and transported to cytoplasm for protein synthesis. RNA normally transcribed from DNA at cell nucleus and not translated. It can translates protein if there is a message in coded, in cytoplasm.


When RNA becomes protein the process is called?

RNA does not become protein. Messenger RNA transcribes the DNA code and carries it to a ribosome where it is translated by transfer RNA into a sequence of amino acids that will make a protein. The entire process is called protein synthesis.


What does messenger RNA have to form?

Its an intermediate message that is translated to form a protein


What do the three kinds of RNA do?

1. Messenger RNA (mRNA) acts as an intermediary between DNA and ribosomes, and is translated into protein by ribosomes. 2. Transfer RNA (tRNA) delivers amino acids to the ribosome complex as mRNA is translated into protein. 3. Ribosomal RNA (RRNA) binds with protein to form ribosomes needed for protein synthesis.


What is the correct order dna-RNA-protein or dna-protein-RNA or RNA-protein-dna?

It's DNA - RNA - protein. DNA encoding a gene is transcribed to mRNA or messenger RNA by RNA polymerase. The RNA is then translated into a protein sequences at the ribosome. tRNA's or transfer RNA's act like a dictionary for the translation. They can recognize a code of three nucleotides (a codon) in the RNA and bring the corresponding amino acid to the right place at the ribosome, where it is ligated to the rest of the protein. A protein is a chain of amino acids. see http://en.wikipedia.org/wiki/Central_dogma


How is RNA translated into proteins in the process of protein synthesis?

During protein synthesis, RNA is translated into proteins through a process involving ribosomes and transfer RNA (tRNA). The ribosome reads the messenger RNA (mRNA) sequence and matches it with the corresponding tRNA carrying specific amino acids. These amino acids are then linked together to form a protein chain according to the mRNA sequence. This process continues until the entire mRNA sequence is translated into a protein.


What is the type of RNA that is converted to a protein during translation?

Messenger RNA (mRNA) is translated into polypeptides on ribosomes by transfer RNA (tRNA).


Is usually found in the nucleus but moves into the cytoplasm.?

A protein called RNA polymerase is usually found in the nucleus where it transcribes DNA into RNA. Once transcribed, the RNA molecule moves into the cytoplasm where it can be translated into a protein by ribosomes.


What is the centrial dogma of biology?

The central dogma of biology states that the flow of genetic information in a cell is from DNA to RNA to protein. This means that genetic information is transcribed from DNA to RNA and then translated from RNA to protein, which carries out various functions in the cell.


Which of the class of RNA molecules carries the genetic information from the nucleus as it is needed for the construction of a protein?

Messenger RNA (mRNA) carries the genetic information from the nucleus to the ribosomes in the cytoplasm where it is translated into a protein.


Is the major function of rna is to carry out the genetic instructions for protein synthesis?

Yes, RNA is involved in transferring genetic information from DNA to the ribosome for protein synthesis. It carries out the instructions encoded in DNA by transcribing them into a complementary RNA sequence, which is then translated into a functional protein.