Myristoyl Coenzyme A, Free acid

SKU:BHB21200059
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Coenza
Coenza
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Overview
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Myristoyl Coenzyme A, Free acid (Free Acid) is a coenzyme A thioester derivative (C35H62N7O17P3S; MW 977.89 g/mol) supplied as Lyophilized powder, purity ≥ 95%, water-soluble. Used as an enzyme substrate/cofactor in metabolic research, enzyme kinetics, and in vitro reconstitution of CoA-dependent pathways.
Purity ≥ 95%
Form Lyophilized powder
Molecular Weight 977.89 g/mol
Solubility Soluble in water
Source Biosynthetic
Activity Enzyme Substrate / Cofactor
Options selector
Catalog no. Size
A-59-10MG 10 mg
A-59-25MG 25 mg
Available Options

Available Sizes:

  • 10 mg
  • 25 mg

Shipping: Ambient temperature (styrofoam + ice gels) — shipped on ice packs at ambient temperature (styrofoam + ice gels). Store at −20 °C upon receipt.

Field Specification
Mfr No A-59
Activity
  • Enzyme Substrate / Cofactor
Alternative Names Tetradecanoyl coenzyme A, Myristyl CoA, Tetradecanoyl CoA
Coenzyme A Class Medium and long-chain
Form Lyophilized powder
Molecular Weight 977.89 g/mol
Product Type
  • Biochemicals
  • Small Molecules
Purity ≥ 95%
Shipping Ambient temperature (styrofoam + ice gels)
SMILES O=C(CCNC(C(C(C)(COP(O)(OP(O)(OCC(C(C1O)OP(O)(O)=O)OC1N(C2=NC=N3)C=NC2=C3N)=O)=O)C)O)=O)NCCSC(CCCCCCCCCCCCC)=O
Solubility Soluble in water
Storage -20°C

Overview

Myristoyl Coenzyme A, Free acid is a biochemical supplied by Coenza for use in enzymology and metabolic research. Available as Lyophilized powder, purity ≥ 95%, suitable for in vitro assays and pathway studies.

Also known as: Tetradecanoyl coenzyme A, Myristyl CoA, Tetradecanoyl CoA.

Key Elements and Design Rationale

  • Formula / MW / Purity: C35H62N7O17P3S; 977.89 g/mol; ≥ 95%. The Free Acid form provides enhanced aqueous stability.
  • Form / Solubility: Lyophilized powder; Soluble in water.
  • Synonyms: Tetradecanoyl coenzyme A, Myristyl CoA, Tetradecanoyl CoA.
  • Origin: Biosynthetic synthesis.

Biological Background

Myristoyl coenzyme A (Myristoyl-CoA) is a conjugate of coenzyme A and myristate, acting as a substrate in the process of protein myristoylation, where the myristoyl group is transferred to the glycine residue at the protein's amino-terminal by N-myristoyl transferase. This modification plays a crucial role in cellular processes and is commonly used in research related to cyclic nucleotides. Myristoyl-CoA is highlighted in studies involving bioactive small molecules and other research areas (Utsumi et al., 2021; Wright et al., 2017).

Research Relevance and Current Trends

  • Acyl-CoA metabolism increasingly linked to histone acylation marks and epigenetic regulation in cancer and metabolic disease research.
  • Growing interest in short-chain fatty acid CoA thioesters as mediators of gut microbiome–host metabolic crosstalk.
  • CoA-dependent enzymes investigated as drug targets in infectious disease and neurometabolic disorder research.

Common Research Applications

  • Enzyme kinetics assays — direct substrate for acyltransferases, thiolases, and dehydrogenases.
  • Metabolic flux analysis — isotope-labeled variants available for stable-isotope tracing.
  • In vitro pathway reconstitution for fatty acid β-oxidation, TCA cycle, or polyketide biosynthesis.
  • Biochemical characterization of CoA-binding proteins by activity assays or binding measurements.

Notes for Experimental Interpretation

  • CoA thioesters hydrolyze at neutral–alkaline pH; prepare working solutions fresh and keep on ice.
  • Different salt forms share the same core structure — normalize concentrations using the free-acid MW when comparing across forms.
  • Thiol oxidation may occur upon air exposure; use under inert atmosphere or with reducing agents where appropriate.
What is Myristoyl Coenzyme A, Free acid and what is it used for?
Myristoyl Coenzyme A, Free acid is a coenzyme A thioester derivative (MW 977.89 g/mol, C35H62N7O17P3S) supplied as Lyophilized powder, purity ≥ 95%. The Free Acid form offers improved aqueous stability compared with some alternatives. It is used as an enzyme substrate and cofactor in metabolic research, enzyme kinetics, and in vitro reconstitution of CoA-dependent biosynthetic and catabolic pathways.
What are the key physicochemical properties?
Molecular formula: C35H62N7O17P3S; MW: 977.89 g/mol; purity: ≥ 95%; form: Lyophilized powder; solubility: Soluble in water; stability: ≥ 2 years. The reactive thioester bond is susceptible to hydrolysis — prepare working solutions fresh and keep on ice during experiments.
How should Myristoyl Coenzyme A, Free acid be dissolved for biochemical assays?
This product is Soluble in water. Dissolve in the appropriate aqueous buffer at the required pH immediately before use. For stock solutions, aliquot into single-use volumes, snap-freeze in liquid nitrogen, and store at −20 °C. Avoid repeated freeze-thaw cycles to prevent hydrolysis.
What enzymes or metabolic pathways is this compound most relevant to?
Depending on the acyl chain length and structure, CoA thioester derivatives serve as substrates for acyl-CoA synthetases, acyltransferases, thiolases, acyl-CoA dehydrogenases, carboxylases, and mutases. Relevant pathways include fatty acid β-oxidation, TCA cycle, amino acid catabolism, and polyketide or terpenoid biosynthesis. Refer to the General Information section and the cited literature for compound-specific enzyme associations.
Does the salt form matter for experimental design?
The salt form (Free Acid, Lithium, Sodium, Trilithium, Trisodium) shares the same core acyl-CoA structure. Counterions are typically inert at standard assay concentrations. When preparing solutions, use the free-acid MW (977.89 g/mol) to normalize molar concentrations across salt forms. Verify buffer compatibility if high ionic strength is a concern.

Need this compound in a format that drops straight into your assay? We can tailor formulation, chemistry, and documentation so your results stay consistent across runs and re-orders.

  • Format options: solid or pre-dissolved solution (choose solvent), target concentration, aliquots, light/moisture-protected packaging
  • Chemistry options: free base/acid vs salt forms, hydrate/solvate preference, stereoisomer control (single enantiomer or racemate), close analogs
  • Add-on labels & handles: D/¹³C/¹⁵N isotopes (LC-MS/internal standards), azide/alkyne or other functional handles for conjugation
  • QC & documentation: standard COA or enhanced analytical pack (HPLC/LC-MS/NMR), chiral purity, residual solvents, water content (KF), method-specific specs
  • Scale & continuity: mg to gram scale, bulk pricing, lot reservation, repeat-order continuity

To quote quickly, tell us: compound name + CAS/structure (SMILES or mol file), intended assay context, solvent preference, salt/stereochemistry requirements, purity/QC level, and the amount (mg–g).

Can’t find the compound you’re looking for?
Send the CAS or structure and your specs. We can help source it, suggest close equivalents, or discuss custom synthesis with the right QC documentation (RUO).

Utsumi, T., et al. (2021). Myristoylation-dependent activation of N-myristoyltransferase plays a role in immune response modulation. Cellular & Molecular Immunology, 18, 2336–2346.

Wright, M. H., et al. (2017). Global analysis of protein N-myristoylation and exploration of N-myristoyltransferase as a drug target in pathogenic protozoa. Frontiers in Immunology, 8, 751.

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Experience the power of Celltrypse™, c-LEcta's innovative enzyme solution for gentle and efficient cell dissociation. Request your free sample and discover a superior alternative for your cell culture workflows.

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