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The start codon. The codon AUG is generally referred as the start codon because the translation of mRNA begins on AUG.

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No, ATG is not a start codon in genetic coding. The start codon is typically AUG.

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The codon typically used as the start codon in protein synthesis is AUG.

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At a start codon, such as AUG, the process of translation begins. The ribosome recognizes the start codon and initiates the assembly of the amino acids into a protein chain. tRNA molecules bring the corresponding amino acids to the ribosome to start the translation process.

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Every mRNA must begin with the start codon AUG, which codes for the amino acid methionine. This start codon marks the site where translation should begin on the mRNA molecule.

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Usual start codon is AUG

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The codon that initiates transcription is the start codon "AUG", which also codes for the amino acid methionine.

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Yes, "AUG" is a start codon in genetic coding.

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Yes, AUG is the start codon in genetic translation.

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The start codon signals the beginning of translation in protein synthesis. It is usually the AUG codon, which also codes for the amino acid methionine. Proteins start at the start codon and continue to be synthesized until a stop codon is reached.

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No, AUG is not always the start codon in genetic sequences. While it is the most common start codon, there are other start codons such as GUG and UUG that can initiate protein synthesis in certain organisms.

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open reading frame is the sequence of nucleotides which start up with the start codon and end up with the stop codon.

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The mRNA codon for TAC is AUG. This codon codes for the amino acid methionine and also serves as the start codon for protein synthesis.

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ATG is the prominent start codon for most of the Eukaryotic proteins, other start codons such as CTG also exist in other species.

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AUG

Start codon containing three nitrogenous bases.

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The start codon for translation is AUG, which codes for the amino acid methionine. It signals the ribosome to start protein synthesis.

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The AUG codon serves as the start codon in genetic translation because it codes for the amino acid methionine, which is essential for initiating protein synthesis. This codon signals the ribosome to begin translating the mRNA sequence into a protein.

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AUG

Methionine is specified by the codon AUG, which is also known as the start codon. Consequently, methionine is the first amino acid to dock in the ribosome during the synthesis of proteins.

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A tRNA carrying methionine pairs with the start codon AUG.

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No, "aug" is not a stop codon in the genetic code. It is actually the start codon that signals the beginning of protein synthesis.

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AUG. Methionine is the first and start codon in forming polypeptides.

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The start codon for mRNA is AUG, which codes for the amino acid methionine. It signals the ribosome to start translation and is crucial for initiating protein synthesis.

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The start codon on an mRNA is always AUG. It codes for the amino acid methionine and signals the start of translation.

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There is only one codon that codes for methionine, which is AUG. This codon also serves as the start codon in mRNA.

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The codon AUG is called the start codon in genetic coding because it signals the beginning of protein synthesis in a gene. It initiates the process of translating the genetic information into a protein.

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The mRNA codon that starts the making of a protein is AUG. This codon codes for the amino acid methionine and also serves as the start codon that initiates protein synthesis.

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AUG is the starting codon found on mrna for all proteins

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In order to find a gene jsut look for a start codon near a promoter and then look for a stop codon in the sequence everything between the start and the stop codon is a gene

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The start codon in mRNA is AUG. It initiates the process of protein synthesis by signaling the ribosome to start translating the mRNA sequence into a protein. The start codon also codes for the amino acid methionine, which is the first amino acid in most proteins.

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Methionine is typically the amino acid that serves as the start codon during translation, initiating the polypeptide chain. It is encoded by the start codon AUG in the mRNA.

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No, translation does not always begin with an AUG codon. While the AUG codon is considered the start codon in most cases, there are exceptions where other codons such as GUG or UUG can also initiate translation.

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Methionine (Met) is represented by the codon AUG, which also serves as the start codon. Tryptophan (Trp) is represented by the codon UGG.

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The specific mRNA codon that initiates the process of translation is AUG, which codes for the amino acid methionine and serves as the start codon.

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The ribosome is signaled to begin making a polypeptide by the start codon (AUG) present in the messenger RNA (mRNA) sequence. This start codon specifically codes for the amino acid methionine, which marks the initiation point for protein synthesis.

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The most common start codon is AUG, which codes for the amino acid methionine.

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The term is "codon." Each codon corresponds to a specific amino acid or serves as a start or stop signal for protein synthesis.

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There are two amino acids that only correspond to one codon:

  1. Tryptophan whose codon is UGG
  2. Methionine whose codon is AUG

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During DNA replication, the ATG start codon serves as the beginning point for the synthesis of a specific protein. This codon signals the start of protein synthesis by attracting the necessary molecules and enzymes to initiate the process. As a result, the DNA replication at the ATG start codon plays a crucial role in ensuring that the correct protein is produced in cells.

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The process of AUG codon recognition helps to start protein synthesis by signaling the ribosome to begin translating the genetic code into a protein. The AUG codon serves as the start codon, indicating where translation should begin. When the ribosome recognizes the AUG codon, it recruits the necessary components to initiate protein synthesis.

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No, tryptophan is an amino acid and not a starting codon for mRNA. The starting codon for mRNA is typically AUG, which codes for the amino acid methionine in most cases.

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Yes, there are two amino acids that are represented by a single codon. Methionine is coded for by the start codon AUG, and tryptophan is coded for by the codon UGG.

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A start codon is important because it signals the beginning of translation in protein synthesis. It provides the information needed for the ribosome to initiate the assembly of the polypeptide chain. Without a start codon, translation cannot begin, and proteins essential for cell function would not be produced.

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The base sequence for the mRNA start codon is AUG. It codes for the amino acid methionine and signals the initiation of protein synthesis.

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Methionine is the amino acid encoded by the initiation codon AUG. It serves as the start codon for protein translation in most organisms.

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The ATG start codon is significant in protein synthesis because it signals the beginning of protein translation. It serves as the start signal for the ribosome to begin assembling the amino acids into a protein chain. Without the ATG start codon, the ribosome would not know where to begin protein synthesis, leading to errors in the process.

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The process of translation in protein synthesis begins when the ribosome recognizes the AUG start codon on the mRNA strand.

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A three-nucleotide sequence in DNA that encodes an amino acid is called a codon. There are also specific codons that signal the start of protein synthesis (start codon) or the termination of protein synthesis (stop codon). These codons help in translating the genetic code from DNA to proteins during transcription and translation processes.

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The mRNA start codon, usually AUG, plays a crucial role in initiating protein synthesis. It signals the ribosome to start translating the mRNA sequence into a protein. This codon marks the beginning of the protein coding sequence and helps establish the correct reading frame for translation.

1 answer