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Name :
CDA HumanDescription:
Cytidine Deaminase Human Recombinant
Cytidine deaminase, Cytidine aminohydrolase, CDA, CDD.
Product # :
ENZ-007Price :
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Name :
GDA MouseDescription:
Guanine Deaminase Mouse Recombinant
Guanine deaminase, Guanase, Guanine aminase, Guanine aminohydrolase, GAH.
Product # :
ENZ-1058Price :
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GDA Human, HisDescription:
Guanine Deaminase Human Recombinant, His Tag
CYPIN, GUANASE, NEDASIN, Guanine aminase, Guanine aminohydrolase, GAH, p51-nedasin.
Product # :
ENZ-682Price :
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Name :
GDA Human, ActiveDescription:
Guanine Deaminase Human Recombinant, Active
Guanine Deaminase, Guanine Aminohydrolase, Guanine Aminase, P51-Nedasin, EC 3.5.4.3, GUANASE, GAH, Cytoplasmic PSD95 Interactor, KIAA1258, NEDASIN, CYPIN.
Product # :
ENZ-982Price :
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Name :
GDA HumanDescription:
Guanine Deaminase Human Recombinant
Guanine Deaminase, Guanine Aminohydrolase, Guanine Aminase, P51-Nedasin, EC 3.5.4.3, GUANASE, GAH, Cytoplasmic PSD95 Interactor, KIAA1258, NEDASIN, CYPIN.
Product # :
ENZ-970Price :
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FTCD HumanDescription:
Formiminotransferase Cyclodeaminase Human Recombinant
Formiminotransferase-cyclodeaminase, FTCD, LCHC1, LC-1.
Product # :
ENZ-302Price :
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AMPD2 HumanDescription:
AMPD2 Human Recombinant
(Isoform L), EC 3.5.4.6, SPG63, AMP Deaminase Isoform L, AMP Deaminase 2, AMPD Isoform L, AMPD, PCH9, AMP deaminase 2.
Product # :
ENZ-835Price :
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SDSL HumanDescription:
Serine Dehydratase-Like Human Recombinant
Serine dehydratase-like, SDS-RS1, Serine dehydratase 2, TDH, L-serine dehydratase/L-threonine deaminase, SDH 2, serine dehydratase related sequence 1, EC 4.3.1.17, EC 4.3.1.19.
Product # :
ENZ-180Price :
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DCTD HumanDescription:
dCMP Deaminase Human Recombinant
Deoxycytidylate deaminase, EC 3.5.4.12, dCMP Deaminase, DCTD, MGC111062.
Product # :
ENZ-538Price :
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AICDA HumanDescription:
Activation-Induced Cytidine Deaminase Human Recombinant
Single-stranded DNA cytosine deaminase, Activation-induced cytidine deaminase, Cytidine aminohydrolase, AICDA, AID, ARP2, CDA2, HIGM2.
Product # :
ENZ-651Price :
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ADAT2 HumanDescription:
Adenosine Deaminase, tRNA-specific 2 Human Recombinant
DEADC1, TAD2.
Product # :
ENZ-561Price :
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ADAT1 HumanDescription:
Adenosine Deaminase tRNA-Specific 1 Human Recombinant
tRNA-specific adenosine deaminase 1, hADAT1, tRNA-specific adenosine- 37 deaminase, ADAT1, ADAT-1.
Product # :
ENZ-307Price :
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ADAL HumanDescription:
Adenosine Deaminase-Like Human Recombinant
Adenosine Deaminase-Like, Adenosine Deaminase-Like Protein, EC 3.5.4.-, EC 3.5.4, ADAL.
Product # :
ENZ-788Price :
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ADA HumanDescription:
Adenosine Deaminase Human Recombinant
Adenosine deaminase, Adenosine aminohydrolase, ADA1, EC 3.5.4.4.
Product # :
ENZ-147Price :
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About Deaminase:
Deaminase is one of the enzymes involved in deamination, a process that, through hydrolysis, removes an amino group from a molecule. The primary way that deaminase removes an amino group is from extra proteins that occur in the liver or kidneys.
Deaminase Function
Deamination plays an important role in the body, helping to eliminate waste, and nitrogen waste, in particular. Deaminase removes the amino group and the nitrogen waste is converted to ammonia and then removed from the body through urination. The amino groups that are removed bond with a hydrogen molecule to form ammonia and a separate process then combines the ammonia with carbon dioxide, turning it into either urea or uric acid.
Deaminase also plays a role in converting the amino groups removed from proteins into different sources that the body can use. These include resources such as hydrogen and carbon, which are important to various different functions in the body. Ultimately, deaminase is important for keeping the body balanced and ensuring excess amounts of substances don't build up.
Deaminase Mechanism
There are different types of deaminase which perform various roles in the body. For example, APOBEC3G, or A3G, plays a role in the cellular defence against HIV and its progression. The antiviral mechanisms of A3G can create mutations in the viral genome of HIV.
Although the main place where deamination occurs is in the liver, it also takes place in the kidneys. Glutamic acid is the most significant amino acid involved in deamination. Other amino acids are mostly deaminated through transamination and deamination of glutamate where glutamate recycles. Excess glutamate undergoes deamination in the kidneys, and glutamate dehydrogenase catalyzes the process. Histidase forms trans-urocanic acid by removing the amino group from histidine. This enzyme is found in the liver and skin. Deamination in the kidneys also produces ammonia, which is disposed of.
Deaminase Interactions
Adenosine or adenine deaminase (ADA) is involved in purine metabolism, breaking down adenosine from food. It is also necessary for the turnover of nucleic acids in tissues. It helps to develop and maintain the human immune system. ADA deaminates adenosine by substituting the amino group for a keto group and converting it into nucleoside inosine. ADA also converts deoxyadenosine to deoxyinosine.