DNA is transcripted into mrna which goes to a ribosome where trna matches up anticodons with mrna codons. the trna carries amino acids which eventually form a polypeptide chain. this polypeptide chain will combine with two or more polypeptide chains forming a fully funcional protein. ~Legit
RNA is required during protein synthesis because it serves as the intermediary between DNA, where genetic information is stored, and proteins, which perform cellular functions. Messenger RNA (mRNA) carries the genetic code from DNA to ribosomes, where proteins are synthesized. Transfer RNA (tRNA) and ribosomal RNA (rRNA) also play essential roles in facilitating protein synthesis.
RNA polymerase is an enzyme that helps in the transcription of DNA into RNA during protein synthesis. It catalyzes the formation of an RNA molecule that carries the genetic information from the DNA to the ribosomes, where the actual protein synthesis takes place.
DNA and RNA are both nucleic acids, but they have key differences in their structure and functions. DNA is double-stranded, while RNA is single-stranded. DNA contains the sugar deoxyribose, while RNA contains ribose. DNA stores genetic information, while RNA helps in protein synthesis and other cellular functions.
RNA is different from DNA in terms of structure and function. Structurally, RNA is single-stranded while DNA is double-stranded. Functionally, RNA is involved in protein synthesis and gene regulation, while DNA stores genetic information.
DNA molecules serve as the genetic blueprint that contains the instructions for synthesizing proteins. The process begins with the DNA in the nucleus being transcribed into messenger RNA (mRNA). This mRNA then travels to the ribosomes in the cytoplasm where it is translated into a specific sequence of amino acids, which ultimately leads to the synthesis of proteins.
Protein synthesis
RNA is required during protein synthesis because it serves as the intermediary between DNA, where genetic information is stored, and proteins, which perform cellular functions. Messenger RNA (mRNA) carries the genetic code from DNA to ribosomes, where proteins are synthesized. Transfer RNA (tRNA) and ribosomal RNA (rRNA) also play essential roles in facilitating protein synthesis.
DNA --> RNA --> Proteins -----------------------------------------That simple.
Protein synthesis
DNA to RNA to protein
RNA polymerase is an enzyme that helps in the transcription of DNA into RNA during protein synthesis. It catalyzes the formation of an RNA molecule that carries the genetic information from the DNA to the ribosomes, where the actual protein synthesis takes place.
DNA and RNA are both nucleic acids, but they have key differences in their structure and functions. DNA is double-stranded, while RNA is single-stranded. DNA contains the sugar deoxyribose, while RNA contains ribose. DNA stores genetic information, while RNA helps in protein synthesis and other cellular functions.
DNA serves as the template for RNA synthesis through a process called transcription. The information encoded in DNA is transcribed into RNA, which then carries out various cellular functions, including protein synthesis. DNA therefore plays a crucial role in determining the sequence and ultimately the function of RNA molecules.
BBC is part of the role in protein synthesis DNA nucleotides RNA. This is part of the body.
they are involved in protein synthesis
Transcription is the synthesis of messenger RNA from DNA in the nucleus.
RNA is different from DNA in terms of structure and function. Structurally, RNA is single-stranded while DNA is double-stranded. Functionally, RNA is involved in protein synthesis and gene regulation, while DNA stores genetic information.