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Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0

Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0

Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0

Purine is a heterocyclic aromatic organic compound that consists of two rings (pyrimidine and imidazole) fused together. It is water-soluble. Purine also gives its name to the wider class of moleculespurines, which include substituted purines and their tautomers. They are the most widely occurring nitrogen-containing heterocycles in nature.[1]

Dietary sources

Purines are found in high concentration in meat and meat products, especially internal organs, such as liver and kidney, and in various seafoods, high-fructose beverages, alcohol, and yeast products.[2][3] Examples of high-purine food sources include anchoviessardines, liver, beef, kidneys, brainsmonkfish, dried mackerel, and shrimp.[3]

Foods particularly rich in hypoxanthineadenine, and guanine lead to higher blood levels of uric acid.[3] Foods having more than 200 mg of hypoxanthine per 100 g, particularly animal and fish meats containing hypoxanthine as more than 50% of total purines, are more likely to increase uric acid levels.[3] Some vegetables, such as cauliflowerspinach, and peas, have considerable levels of purines, but do not contribute to elevated uric acid levels, possibily due to digestion and bioavailability factors.[3]

Dairy products, soy foods, cereals, beans, mushrooms, and coffee are low-purine foods, characterized specifically by low levels of adenine and guanine comprising more than 60% of purines.[3] A low-purine dietary plan that may reduce the risk of hyperuricemia and gout includes eggs, dairy products, fruits, vegetables, legumes, mushrooms, and soy products.[2][3][4]

Biochemistry

Purines and pyrimidines make up the two groups of nitrogenous bases, including the two groups of nucleotide bases. The purine bases are guanine (G) and adenine (A) which form corresponding nucleosides-deoxyribonucleosides (deoxyguanosine and deoxyadenosine) with deoxyribose moiety and ribonucleosides (guanosineadenosine) with ribose moiety. These nucleosides with phosphoric acid form corresponding nucleotides (deoxyguanylate, deoxyadenylate and guanylate, adenylate) which are the building blocks of DNA and RNA, respectively. Purine bases also play an essential role in many metabolic and signalling processes within the compounds guanosine monophosphate (GMP) and adenosine monophosphate (AMP). Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0

In order to perform these essential cellular processes, both purines and pyrimidines are needed by the cell, and in similar quantities. Both purine and pyrimidine are self-inhibiting and activating. When purines are formed, they inhibit the enzymes required for more purine formation. This self-inhibition occurs as they also activate the enzymes needed for pyrimidine formation. Pyrimidine simultaneously self-inhibits and activates purine in a similar manner. Because of this, there is nearly an equal amount of both substances in the cell at all times.[5]Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0

Properties

Purine is both a very weak acid (pKa 8.93) and an even weaker base (pKa 2.39).[6]

Purine is aromatic, having four tautomers each with a hydrogen bonded to a different one of the four nitrogen atoms. These are identified as 1-H, 3-H, 7-H, and 9-H (see image of numbered ring). The common crystalline form favours the 7-H tautomer, while in polar solvents both the 9-H and 7-H tautomers predominate.[7] Substituents to the rings and interactions with other molecules can shift the equilibrium of these tautomers.[8]

Notable purines

There are many naturally occurring purines. They include the nucleotide bases adenine and guanine. In DNA, these bases form hydrogen bonds with their complementary pyrimidines, thymine and cytosine, respectively. This is called complementary base pairing. In RNA, the complement of adenine is uracil instead of thymine.

Other notable purines are hypoxanthine, xanthinetheophyllinetheobrominecaffeineuric acid and isoguanine.

Functions

Aside from the crucial roles of purines (adenine and guanine) in DNA and RNA, purines are also significant components in a number of other important biomolecules, such as ATPGTPcyclic AMPNADH, and coenzyme A. Purine (1) itself, has not been found in nature, but it can be produced by organic synthesis.

They may also function directly as neurotransmitters, acting upon purinergic receptors. Adenosine activates adenosine receptors.

Product Details

CAS NO:120-73-0
Molecular Formula:C5H4N4
Melting Point:
Smiles Code:N=1C=NC=2N=CNC2C1
Density:
Catalog Number:CM138639
Molecular Weight:120.12
Boiling Point:
MDL No:MFCD00079221
Storage:Store at room temperature.

Category Infos

Purines
Purines are heterocyclic aromatic compounds composed of linked pyrimidine and imidazole rings. In mammals, purines are most commonly expressed in DNA and RNA (including the purines adenine and guanine), as well as single-molecule nucleotides (adenosine triphosphate (ATP), adenosine diphosphate (ADP), adenosine monophosphate (AMP), cyclic AMP, and to a lesser extent guanosine triphosphate (GTP) and cyclic guanosine monophosphate (cGMP). Purines are also key elements of the following energy metabolism molecules: reduced nicotinamide adenine dinucleotide, nicotinamide adenine dinucleotide phosphate (NADPH), and coenzyme Q. Purines can also act as direct neurotransmitters; for example, adenosine may interact with receptors to modulate cardiovascular and central nervous system (CNS) function. Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0, Buy Purine ATP (Adenosine triphosphate) Cas 120-73-0
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