Damage to nucleic acids, such as DNA, can lead to mutations that disrupt the coding sequence of genes responsible for enzyme production. If the genetic information is altered, the resulting mRNA may be nonfunctional or absent, preventing the synthesis of the corresponding enzyme. Additionally, if the damage affects regulatory regions, it can impair the transcription of the gene entirely. Consequently, without the proper enzyme, various biochemical processes may be disrupted, impacting cellular function and overall health.
Damage to nucleic acids, such as DNA, can disrupt the genetic information required for protein synthesis. If the genes encoding a specific enzyme are mutated or damaged, the resulting mRNA may be improperly transcribed, or the translation process may be hindered. This can lead to insufficient or non-functional enzyme production, ultimately affecting various biochemical pathways and cellular functions. Consequently, the organism may experience metabolic imbalances or other physiological issues due to the lack of that enzyme.
Damage to nucleic acids, such as DNA, can disrupt the genetic code that encodes for enzymes. If the segments of DNA responsible for enzyme production are altered or mutated, it can lead to improper transcription and translation processes, resulting in the enzyme not being synthesized correctly or at all. This disruption can impair cellular functions and metabolic pathways that depend on those enzymes. Consequently, the absence or malfunction of essential enzymes can lead to various health issues.
Damage to DNA can affect enzyme production because enzymes are essential for carrying out the processes required for DNA replication and repair. If DNA damage occurs, the cell may struggle to produce the required enzymes to maintain genome integrity, leading to errors in DNA repair or replication, which can have potentially harmful consequences.
Yes, Canavan disease is caused by a mutation in the ASPA gene. This gene provides instructions for making an enzyme called aspartoacylase, which is essential for the breakdown of a compound called N-acetylaspartate. Mutations in the ASPA gene lead to the accumulation of N-acetylaspartate in the brain, causing the characteristic features of Canavan disease.
They could not produce certain proteins.
Damage to nucleic acids, such as DNA, can disrupt the genetic information required for protein synthesis. If the genes encoding a specific enzyme are mutated or damaged, the resulting mRNA may be improperly transcribed, or the translation process may be hindered. This can lead to insufficient or non-functional enzyme production, ultimately affecting various biochemical pathways and cellular functions. Consequently, the organism may experience metabolic imbalances or other physiological issues due to the lack of that enzyme.
Damage to nucleic acids, such as DNA, can disrupt the genetic code that encodes for enzymes. If the segments of DNA responsible for enzyme production are altered or mutated, it can lead to improper transcription and translation processes, resulting in the enzyme not being synthesized correctly or at all. This disruption can impair cellular functions and metabolic pathways that depend on those enzymes. Consequently, the absence or malfunction of essential enzymes can lead to various health issues.
Tay Sachs Disease
enzyme
On September 14, 1990, a four-year old girl suffering from a genetic disorder that prevented her body from producing a crucial enzyme became the first person to undergo gene therapy in the United States
On September 14, 1990, a four-year old girl suffering from a genetic disorder that prevented her body from producing a crucial enzyme became the first person to undergo gene therapy in the United States
Cystic Fibrosis.
The enzyme function would not be as effecient, causing the liver to produce more enzymes.
Damage to DNA can affect enzyme production because enzymes are essential for carrying out the processes required for DNA replication and repair. If DNA damage occurs, the cell may struggle to produce the required enzymes to maintain genome integrity, leading to errors in DNA repair or replication, which can have potentially harmful consequences.
In our body,amylose is digested due to presence of amylase enzyme,hence person gains weight.while our body lacks cellulase enzyme which is necessary for the digestion of cellulose,hence a person suffers from starvation.
The person who is found to be at fault or liable pays for the damage.
Lactose intolerance is the inability to efficiently convert lactose into glucose and galactose, a reaction catalyzed by the enzyme lactase. (A rule of thumb for enzyme nomenclature is that many enzyme names typically take most of the name of their substrate and slap an "-ase" at the end.)