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When a cell needs to make proteins, special parts within the nucleus read the DNA and transcribe it into messenger RNA (mRNA). This mRNA serves as a copy of the genetic instructions, which is then transported out of the nucleus into the cytoplasm. There, ribosomes read the mRNA and translate it into a specific sequence of amino acids, ultimately forming a protein.

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Where does this organelles get its instruction?

Organelles receive instructions from the cell's nucleus, where DNA is stored and transcribed into messages (messenger RNA) that provide the information needed for the organelles to carry out their specific functions. The encoded information in DNA is transcribed into RNA molecules, which are then used by the organelles to produce proteins and execute various cellular processes.


Does plasma membrane produce proteins?

No, the plasma membrane does not produce proteins. Proteins are synthesized by ribosomes in the cytoplasm and then transported to the plasma membrane to carry out various functions such as transport, signaling, and cell adhesion.


What does the ribosmes do?

produce proteins by following coded instructions that came from the nucleus.


Where are genes found in the nucleus?

Genes are found on chromosomes inside the nucleus of a cell. Chromosomes are composed of DNA, which carries the genetic information that determines an organism's traits. Genes are specific segments of DNA that encode instructions for making proteins and controlling cellular functions.


How does the nucleus control witch proteins are made by the ribosomes?

The nucleus controls which proteins are made by ribosomes through the process of transcription. During transcription, specific genes in the DNA are copied into messenger RNA (mRNA), which carries the genetic information from the nucleus to the ribosomes in the cytoplasm. The sequence of nucleotides in the mRNA determines the sequence of amino acids in the protein, thus dictating which proteins are synthesized. This regulation ensures that cells produce the necessary proteins according to their specific functions and environmental conditions.

Related Questions

Where does this organelles get its instruction?

Organelles receive instructions from the cell's nucleus, where DNA is stored and transcribed into messages (messenger RNA) that provide the information needed for the organelles to carry out their specific functions. The encoded information in DNA is transcribed into RNA molecules, which are then used by the organelles to produce proteins and execute various cellular processes.


In a cell information that controls the production of proteins must pass from the nucleus to the?

The information that controls the production of proteins must pass from the nucleus into the cytoplasm in the form of mRNA. mRNA is a template copy of the DNA inside the nucleus and is read by ribosomes in the cytoplasm to produce proteins.


Does plasma membrane produce proteins?

No, the plasma membrane does not produce proteins. Proteins are synthesized by ribosomes in the cytoplasm and then transported to the plasma membrane to carry out various functions such as transport, signaling, and cell adhesion.


What does the ribosmes do?

produce proteins by following coded instructions that came from the nucleus.


What does ribosme do?

produce proteins by following coded instructions that came from the nucleus.


Where are genes found in the nucleus?

Genes are found on chromosomes inside the nucleus of a cell. Chromosomes are composed of DNA, which carries the genetic information that determines an organism's traits. Genes are specific segments of DNA that encode instructions for making proteins and controlling cellular functions.


How does the nucleus control witch proteins are made by the ribosomes?

The nucleus controls which proteins are made by ribosomes through the process of transcription. During transcription, specific genes in the DNA are copied into messenger RNA (mRNA), which carries the genetic information from the nucleus to the ribosomes in the cytoplasm. The sequence of nucleotides in the mRNA determines the sequence of amino acids in the protein, thus dictating which proteins are synthesized. This regulation ensures that cells produce the necessary proteins according to their specific functions and environmental conditions.


How the contents of the nucleus help to carry out the control on the activities in a cell?

The nucleus contains DNA which carries the genetic information for controlling the activities of the cell. Through the process of transcription and translation, the information in the nucleus is used to produce proteins that play a key role in regulating cellular activities. Additionally, the nucleus regulates gene expression by controlling which genes are turned on or off at a given time.


What is the genetic code of DNA in the nucleus reaches the cytoplasm by way of?

The genetic information in DNA is transcribed into messenger RNA (mRNA) in the nucleus. The mRNA then travels to the cytoplasm where it is translated by ribosomes to produce proteins. This process is known as protein synthesis.


Cells store genetic information in DNA. That genetic information is used to synthesize .?

cells store genetic information in dna. that genetic information is used to synthesize


What genetic information protein move from the nucleus to the cytoplasm?

The genetic information that moves from the nucleus to the cytoplasm is in the form of messenger RNA (mRNA). After transcription, mRNA carries the genetic code from DNA in the nucleus to ribosomes in the cytoplasm, where it serves as a template for protein synthesis during translation. This process is crucial for gene expression, allowing cells to produce the proteins necessary for their functions.


Do ribosomes store the information necessary to produce proteins?

No, ribosomes do not store the information necessary to produce proteins. They function by reading the information present in messenger RNA (mRNA) molecules and using it to synthesize proteins. The genetic information needed for protein synthesis is contained within the DNA of a cell.