GAPDHS: A Potential Drug Target for Energy and Blood Sugar Regulation
GAPDHS: A Potential Drug Target for Energy and Blood Sugar Regulation
Glyceraldehyde-3-phosphate dehydrogenase (GAPDHS) is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a protein that is composed of four subunits, which are encoded by the genes GAPDHS1, GAPDHS2, GAPDHS3, and GAPDHS4. The GAPDHS1 subunit is responsible for catalyzing the first step of the glyceraldehyde pathway, while the other subunits are involved in the subsequent steps.
GAPDHS is a critical enzyme that is involved in the production of ATP, which is the energy currency of the cell. It is also involved in the production ofNADH, which is a critical co-factor for various enzymes that participate in the detoxification of harmful substances in the body.
GAPDHS is also involved in the production of glucose, which is the body's main source of energy. It is part of a complex metabolic pathway that is responsible for maintaining the brain's energy supply, and it is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP, NADH, and glucose, which are all critical for the function of the body. It is also involved in the production of insulin, which is critical for the regulation of blood sugar levels.
GAPDHS is a protein that is expressed in various tissues and cells in the body, including the brain, heart, and kidneys. It is a key enzyme in the glyceraldehyde pathway, a critical metabolic pathway that is involved in the production of energy from glucose.
GAPDHS is a potential drug target, as it is involved in the production of ATP
Protein Name: Glyceraldehyde-3-phosphate Dehydrogenase, Spermatogenic
Functions: May play an important role in regulating the switch between different pathways for energy production during spermiogenesis and in the spermatozoon. Required for sperm motility and male fertility (By similarity)
More Common Targets
GAPLINC | GAPT | GAPVD1 | GAR1 | GAREM1 | GAREM2 | GARIN1A | GARIN1B | GARIN2 | GARIN3 | GARIN4 | GARIN5A | GARIN5B | GARIN6 | GARNL3 | GARRE1 | GARS1 | GARS1-DT | GART | GAS1 | GAS1RR | GAS2 | GAS2L1 | GAS2L2 | GAS2L3 | GAS5 | GAS6 | GAS6-AS1 | GAS7 | GAS8 | GAS8-AS1 | GASAL1 | GASK1A | GASK1B | GASK1B-AS1 | GAST | GATA1 | GATA2 | GATA2-AS1 | GATA3 | GATA3-AS1 | GATA4 | GATA5 | GATA6 | GATA6-AS1 | GATAD1 | GATAD2A | GATAD2B | GATB | GATC | GATD1 | GATD1-DT | GATD3 | GATM | GATOR1 Complex | GAU1 | GBA1 | GBA2 | GBA3 | GBAP1 | GBE1 | GBF1 | GBGT1 | GBP1 | GBP1P1 | GBP2 | GBP3 | GBP4 | GBP5 | GBP6 | GBP7 | GBX1 | GBX2 | GC | GCA | GCAT | GCC1 | GCC2 | GCC2-AS1 | GCDH | GCFC2 | GCG | GCGR | GCH1 | GCHFR | GCK | GCKR | GCLC | GCLM | GCM1 | GCM2 | GCN1 | GCNA | GCNT1 | GCNT1P3 | GCNT2 | GCNT3 | GCNT4 | GCNT7 | GCOM1