use one equivalent of benzaldehyde instead of two
Using RNA as a template for protein synthesis allows for the DNA to remain protected and stable in the cell nucleus while the RNA carries the genetic information to the ribosomes for protein production. RNA is more versatile and can be easily modified or degraded if needed, providing the cell with a flexible and dynamic way to control protein synthesis. Additionally, using RNA as an intermediate step allows for faster and more efficient protein synthesis compared to directly translating proteins from DNA.
Acetanilide can also be synthesized by reacting aniline with acetic anhydride, instead of acetyl chloride. This is known as the Acetic Anhydride Method.
No, DNA itself does not transform to allow protein synthesis to occur. Instead, a process called transcription converts the DNA code into messenger RNA (mRNA), which carries the instructions for protein synthesis to the ribosomes. The ribosomes then decode the mRNA to assemble proteins based on the genetic information stored in the DNA.
Yes, but not very much. Red blood cells lack most of the typical organelles of a cell, including a nucleus and mitochondria.
The four bases used in protein synthesis are adenine (A), guanine (G), cytosine (C), and uracil (U). In DNA, uracil is replaced by thymine (T). These bases pair up in specific combinations during transcription and translation to form the genetic code that determines the sequence of amino acids in a protein.
That's pretty simple actually, the plural form of synthesis is syntheses! Just an E instead of an I at the end! Hope this helps!!! :D
Aminoglycosides, such as gentamicin and kanamycin, do not inhibit cell wall synthesis. Instead, they disrupt protein synthesis in bacteria by binding to the 30S ribosomal subunit.
because they one fungal partner which synthesis
RNA uses uracil instead of thymine in its nucleotide sequence because uracil is more stable and efficient for the rapid synthesis of proteins during protein synthesis. Thymine is typically found in DNA, while uracil is specific to RNA.
In DNA, the 4 bases are guanine, cytesine, thymine and adenine. In RNA, also used in protein synthesis, instead of adenine, there is urasil
RNA has uracil instead of thymine because during the process of transcription, which is the synthesis of RNA from DNA, uracil pairs with adenine in RNA just like thymine pairs with adenine in DNA. This substitution allows RNA to function effectively in its role of carrying genetic information and protein synthesis.
Using RNA as a template for protein synthesis allows for the DNA to remain protected and stable in the cell nucleus while the RNA carries the genetic information to the ribosomes for protein production. RNA is more versatile and can be easily modified or degraded if needed, providing the cell with a flexible and dynamic way to control protein synthesis. Additionally, using RNA as an intermediate step allows for faster and more efficient protein synthesis compared to directly translating proteins from DNA.
Acetanilide can also be synthesized by reacting aniline with acetic anhydride, instead of acetyl chloride. This is known as the Acetic Anhydride Method.
DNA and RNA each have 4 bases, 3 of which are common to both and 1 that differs.DNA has Thymine, Adenine, Cytosine, GuanineRNA has Uracil, Adenine, Cytosine, Guanine
RNA acts as an expendable copy of the genetic material.
Ribosomal RNA (rRNA) is involved in protein synthesis, but instead are an integral part of the ribosome machinery that is used to make proteins from mRNAs.
No, DNA itself does not transform to allow protein synthesis to occur. Instead, a process called transcription converts the DNA code into messenger RNA (mRNA), which carries the instructions for protein synthesis to the ribosomes. The ribosomes then decode the mRNA to assemble proteins based on the genetic information stored in the DNA.