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The structure that contains most of an organism's DNA?

The cell nucleus is the structure that contains most of an organism's DNA.


Where do the instructions for building a protein come from originally?

The instructions for building a protein come from the DNA molecule. DNA contains the genetic code that is transcribed into messenger RNA (mRNA). The mRNA is then translated into a sequence of amino acids, which determine the structure and function of the protein.


Which structure contains the factors that control the cell characterics?

The structure that contains the factors that control cell characteristics is the nucleus. Within the nucleus, the genetic material (DNA) is stored, which contains the instructions for protein synthesis and the overall function and characteristics of the cell. The nucleus also houses the nucleolus, which is involved in the production of ribosomes essential for protein synthesis.


Does DNA contain deoxyribose in its structure?

Yes, DNA contains deoxyribose in its structure.


Does DNA contain ribose in its structure?

No, DNA contains deoxyribose in its structure, not ribose.


Does DNA contain ribose or deoxyribose in its structure?

DNA contains deoxyribose in its structure.


Does DNA have thymine or uracil in its structure?

DNA contains thymine in its structure, not uracil.


Does DNA have uracil or thymine in its structure?

DNA contains thymine in its structure, not uracil.


What is a segment with information to make a protein?

A segment of DNA on a chromosome that controls the production of a protein is called a gene. Chromosome a cellular structure that contains DNA.


Structure that contains genes?

DNA


What makes DNA different from RNA in terms of their structure and functions?

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.


How does DNA sequence determine protein function?

The DNA sequence encodes the sequence of amino acids in a protein, which in turn determines the protein's structure and function. The specific sequence of amino acids determines how the protein folds into its three-dimensional structure, which ultimately determines its function in the body. Any changes in the DNA sequence can result in alterations to the protein structure and function, leading to potential health consequences.