protein
The protein produced during photosynthesis is called RuBisCO (ribulose-1,5-bisphosphate carboxylase/oxygenase), which plays a key role in fixing carbon dioxide from the atmosphere into organic molecules within the chloroplasts of plant cells.
A mutation can alter the sequence of DNA, causing changes in the mRNA produced during transcription. This can result in the insertion, deletion, or substitution of amino acids in the protein sequence during translation. These changes can impact the structure and function of the protein, potentially leading to a non-functional or altered protein being produced.
Wrong Shape
An error during transcription, such as a misincorporation of nucleotides, can lead to an incorrect mRNA sequence. This altered mRNA can result in the production of a protein with an incorrect amino acid sequence, potentially affecting its structure and function. Depending on the nature and location of the error, the protein may become nonfunctional, gain new functions, or be degraded more rapidly, ultimately impacting the cell's physiology.
The protein might be unable to function.
Errors during transcription can lead to mutations in the messenger RNA (mRNA) sequence, which could result in changes to the amino acid sequence of the protein being produced. This altered amino acid sequence can affect the protein's structure and function, potentially rendering it non-functional or with altered activity. Additionally, the error may also cause premature termination of the protein synthesis, resulting in a truncated or incomplete protein.
The protein might be unable to function.
A possible effect on an error during transcription is that a nonfunctioning protein will be produced. The protein would be made of the wrong amino acids chain will be produced (and wrong shape). The wrong protein will be produced. the wrong amino acid chain will be produced
protein
urea
A chain or a polypeptide is usually produced during the process of translation. This will later change into a protein.
during interphase
The sequences of bases will be affected and can produce a protein that is a nonsense protein and will not work at all, another that will work somewhat or a protein that will work just fine which is called a silent mutation. It all depends on where the error is. http://www.chemguide.co.uk/organicprops/aminoacids/dna6.html
A non-functioning protein will be produced.
converts to fibrin during the clotting process
The protein produced during photosynthesis is called RuBisCO (ribulose-1,5-bisphosphate carboxylase/oxygenase), which plays a key role in fixing carbon dioxide from the atmosphere into organic molecules within the chloroplasts of plant cells.