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ML0015

Sigma-Aldrich

Aspartate Metabolite Library

Synonyma:

Aspartic acid Metabolite Library

Přihlásitk zobrazení cen stanovených pro organizaci a smluvních cen


About This Item

UNSPSC Code:
12352209
NACRES:
NA.25

description

Aspartate pathway

Quality Level

form

solid

application(s)

metabolomics

storage temp.

−20°C

General description

Aspartic acid (or aspartate) is a non-essential amino acid, which means that it is naturally synthesized by mammals. Aspartate presents many biochemical roles:
In the L-conformation, aspartic acid is a building block in the production of proteins, as well as aiding in many bodily functions, including the urea cycle, gluconeogenesis, and Krebs Cycle, a process that generates adenosine triphosphate (ATP). Aspartic acid also works as a neurotransmitter. The D-Aspartate conformation is linked to neurogenesis and endocrine systems.

application

The Aspartate Metabolite Library is a kit that contains a selection of 23 metabolite involved in Aspartate metabolism.These may be used for general research, as reagents or as reference compounds in analytical procedures.

Biochem/physiol Actions

Aspartate roles and metabolites:

  • Aspartate is synthesized by transamination of oxaloacetate through the actions of Aspartate aminotransferase and pyridoxal 5′- phosphate. Aspartyl-tRNA synthase can then couple the aspartate to aspartyl tRNA for protein synthesis.
  • Aspartate carries the reducing equivalents in the mitochondrial Malate-Aspartate shuttle, which uses the ready interconversion of aspartate and oxaloacetate.
  • N-acetylaspartate synthase, present in the cytoplasm, converts aspartate to N-acetylaspartate, a brain metabolite that regulates dopamine.
  • Asparagine is biosynthesized by Asparagine synthetase from aspartate, glutamine, and ATP. Asparagine is involved in the metabolic control of cell functions in nerve and brain tissue.
  • Arginosuccinic acid is synthesized from aspartate, citrulline and ATP through the action of Argininosuccinate synthase, one of the enzymes of the urea cycle. In this metabolic pathway, neurotoxic ammonia, produced by protein catabolism, is converted into urea in the liver.
  • Fumaric acid is synthesized from Argininosuccinic acid via an Argininosuccinate lyase, which is an enzyme in the Citric Acid Cycle.
  • Inosinic acid, aspartic acid and GTP are interconverted to GDP and AMP by the Adenylosuccinate synthetase isozyme 1. This process is involved in the purine nucleotide cycle which regulates nucleotides levels in various tissues.
  • Aspartate transcarbamoylase catalyzes the synthesis of N-carbamoyl-L-aspartate from carbamoyl phosphate and aspartate that are involved in the de novo biosynthesis of pyrimidines.
  • Beta alanine is formed by decarboxylation of aspartate by Glutamate decarboxylase 1 in the cytoplasm.
  • L-aspartate is converted to D-aspartate through the action of a D-aspartate racemase. D-aspartate contributes to the synthesis and release of glucocorticoids, prolactin, oxytocin, and steroids. D-aspartate plays an important role in the brain activity of mammals.

Components

Contains 10 mg each of Aspartate metabolism metabolite standards packaged individually.

Součásti soupravy, které jsou dostupné také samostatně

Č. produktu
Popis
Bezpečností list

  • A2252Adenosine 5′-monophosphate monohydrate, from yeast, ≥97%Bezpečností list

  • A2383Adenosine 5′-triphosphate disodium salt hydrate, Grade I, ≥99%, from microbialBezpečností list

  • A5707Argininosuccinic acid disodium salt hydrate, ≥80%Bezpečností list

  • 146064β-Alanine, 99%Bezpečností list

  • C4135Carbamyl phosphate disodium salt, ≥80%Bezpečností list

  • C7629L-Citrulline, ≥98% (TLC)Bezpečností list

  • 219096D-Aspartic acid, ReagentPlus®, 99%Bezpečností list

  • F6625Flavin adenine dinucleotide disodium salt hydrate, ≥95% (HPLC), powderBezpečností list

  • 47910Fumaric acid, ≥99.0% (T)Bezpečností list

  • G7252Guanosine 5′-diphosphate tris salt from Saccharomyces cerevisiae, Type VI, ≥92.5%Bezpečností list

  • G9002Guanosine 5′-triphosphate tris salt, ≥93% (HPLC), powderBezpečností list

  • I2879Inosine 5′-monophosphate from Saccharomyces cerevisiae, ≥98%Bezpečností list

  • A5006L-Arginine, reagent grade, ≥98%Bezpečností list

  • A0884L-Asparagine, ≥98% (HPLC)Bezpečností list

  • 11189L-Aspartic acid, BioUltra, ≥99.5% (T)Bezpečností list

  • G1251L-Glutamic acid, ReagentPlus®, ≥99% (HPLC)Bezpečností list

  • G3126L-Glutamine, ReagentPlus®, ≥99% (HPLC)Bezpečností list

  • 00920N-Acetyl-L-aspartic acid, ≥99.0% (T)Bezpečností list

  • O4126Oxaloacetic acid, ≥97% (HPLC)Bezpečností list

  • K1750α-Ketoglutaric acid, ≥98.5% (NaOH, titration)Bezpečností list

  • P9255Pyridoxal 5′-phosphate hydrate, ≥98%Bezpečností list

  • P8010Sodium pyrophosphate tetrabasic, ≥95%Bezpečností list

  • 69037Ureidosuccinic acid, 98.0-102.0% (T)Bezpečností list

Zobrazit všechny (23)

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Č. produktu
Popis
Stanovení ceny

pictograms

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signalword

Danger

hcodes

Hazard Classifications

Acute Tox. 4 Oral - Eye Dam. 1

Storage Class

11 - Combustible Solids


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Navštívit knihovnu dokumentů

F Errico et al.
Translational psychiatry, 4, e417-e417 (2014-07-30)
D-aspartate (D-Asp) is an atypical amino acid, which is especially abundant in the developing mammalian brain, and can bind to and activate N-methyl-D-Aspartate receptors (NMDARs). In line with its pharmacological features, we find that mice chronically treated with D-Asp show
Pyrimidine Biosynthesis
Lennarz W J, et al.
Encyclopedia of Biological Chemistry, 600-605 (2004)
Ifeanyi J Arinze
Biochemistry and molecular biology education : a bimonthly publication of the International Union of Biochemistry and Molecular Biology, 33(3), 165-168 (2005-05-01)
Some metabolic processes are readily understood because they are circumscribed in metabolic pathways that have clearly identifiable beginning points, end products, and other features. Other metabolic pathways that do not appear to be straightforward pose difficulties for students. One such
Kıvanç Birsoy et al.
Cell, 162(3), 540-551 (2015-08-02)
The mitochondrial electron transport chain (ETC) enables many metabolic processes, but why its inhibition suppresses cell proliferation is unclear. It is also not well understood why pyruvate supplementation allows cells lacking ETC function to proliferate. We used a CRISPR-based genetic
Synthesis of Nonessential Amino Acids and Amino Acid Degradation.
Litwack G, et al.
Human Biochemistry and Disease, 63-94 (2018)

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