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Is protein made out of RNA strands?

No, protein is not made out of RNA strands. Proteins are composed of amino acids, while RNA is a nucleic acid that plays a role in protein synthesis. RNA is involved in translating the genetic information encoded in DNA into the sequence of amino acids that make up proteins.


Are protein molecules made up of strands of DNA joined together by amino acid sequences?

No, protein molecules are not made up of strands of DNA joined together. DNA contains the genetic information that codes for the synthesis of proteins. Proteins are made up of amino acids joined together in a specific sequence dictated by the instructions encoded in the DNA molecule.


What are 2 things that are ensured by the duplication of complementary strands of genetic information in human cells?

The duplication of complementary strands of genetic information in human cells ensures genetic stability and accurate transmission of genetic information during cell division. This process allows for precise replication of DNA, preventing mutations and maintaining the integrity of the genetic code. Additionally, it provides a mechanism for repair, as one strand can serve as a template for correcting errors in the other strand.


Can nucleic acid duplicate itself?

Yes, nucleic acids can duplicate themselves through a process called replication, which involves unwinding the DNA double helix and synthesizing two new strands that are complementary to the original strands. This process ensures that genetic information is passed on accurately during cell division.


How is the appearance of your DNA similar or dissimilar to what you have learned about DNA structure?

My DNA appears as a double helix, just like the structure I have learned about. The double helix is made up of two intertwining strands that contain genetic information in the form of sequences of nucleotide bases (adenine, thymine, cytosine, and guanine). This structure allows for the storage and transmission of genetic information during cell division and protein synthesis.

Related Questions

What r viruses?

If you mean what are viruses then they are nonliving strands Rna surrounded by a protein coat


What is the significance of double stranded DNA or RNA in genetic replication and protein synthesis?

Double stranded DNA or RNA is significant in genetic replication and protein synthesis because it serves as a template for the accurate copying of genetic information. During replication, the double strands separate to allow for the synthesis of new complementary strands. In protein synthesis, the double strands provide the instructions for the sequence of amino acids that make up proteins. This process is essential for the proper functioning and development of living organisms.


How many strands are there in DNA and what is their significance in genetic information?

DNA consists of two strands that are twisted together in a double helix structure. These strands contain genetic information in the form of genes, which determine an organism's traits and characteristics. The pairing of the strands allows for the accurate replication and transmission of genetic information during cell division and reproduction.


Is protein made out of RNA strands?

No, protein is not made out of RNA strands. Proteins are composed of amino acids, while RNA is a nucleic acid that plays a role in protein synthesis. RNA is involved in translating the genetic information encoded in DNA into the sequence of amino acids that make up proteins.


Where are coiled strands in the cell nuclei that contains genetic information?

DeoxyriboNucleicAcid


Is the genetic information found in disorganized strands called chromosomes chromatin chromatids or spindle?

The genetic information found in disorganized strands is called chromatin. Chromosomes are tightly coiled and organized structures made up of chromatin. Chromatids are the duplicated strands of a chromosome, while the spindle is a structure involved in cell division.


How long are DNA strands and what significance does their length have in genetic processes?

DNA strands are typically several million to billions of base pairs long. The length of DNA strands is significant in genetic processes because it determines the amount of genetic information that can be stored and transmitted. Longer DNA strands can contain more genes and regulatory elements, allowing for more complex genetic processes and variations.


What is the long strand of DNA and protein?

The long strand of DNA and protein is called a chromosome. Chromosomes are found in the nucleus of eukaryotic cells and contain genes that carry genetic information. They condense and become visible during cell division.


What is the significance of the 3 end of DNA in the process of genetic replication and protein synthesis?

The 3' end of DNA is important in genetic replication and protein synthesis because it serves as the starting point for the synthesis of new DNA strands and RNA molecules. This end provides a template for complementary base pairing during replication and transcription, ensuring accurate copying of genetic information. Additionally, the 3' end is where new nucleotides are added by enzymes like DNA polymerase and RNA polymerase, allowing for the formation of new DNA strands and RNA molecules essential for protein synthesis.


Are protein molecules made up of strands of DNA joined together by amino acid sequences?

No, protein molecules are not made up of strands of DNA joined together. DNA contains the genetic information that codes for the synthesis of proteins. Proteins are made up of amino acids joined together in a specific sequence dictated by the instructions encoded in the DNA molecule.


Strands of genetic material floating in the nucleus are referred to as what?

Strands of genetic material floating in the nucleus are referred to as chromosomes. Chromosomes are made up of DNA and carry the genetic information necessary for an organism's development and function.


Do the two strands of DNAcarry same genetic information?

Yes, the two strands of DNA are complementary and contain the same genetic information, with each strand serving as a template for the other during replication. This allows for the accurate copying of genetic information in DNA.