Name :
Recombinant Human IVD Protein (aa 30-423, His Tag)

Biological Activity :

Background :
IVD (Isovaleryl-CoA Dehydrogenase) is a Protein Coding gene. IVD is a mitochondrial matrix enzyme that catalyzes the third step in leucine catabolism. IVD plays an essential role in processing proteins obtained from the diet. The body breaks down proteins from food into smaller parts called amino acids. Amino acids can be further processed to provide energy for growth and development. Isovaleryl-CoA dehydrogenase helps process a particular amino acid called leucine. Specifically, isovaleryl-CoA dehydrogenase is responsible for the third step in the breakdown of leucine. This step is a chemical reaction that converts a molecule called isovaleryl-CoA to another molecule, 3-methylcrotonyl-CoA. Additional chemical reactions convert 3-methylcrotonyl-CoA into molecules that are used for energy.

Biological Activity :
Testing in progress

Expression Host :
Human

Source :
Baculovirus-Insect Cells

Tag :

Protein Accession No. :
AAH17202.1

NCBI Gene ID :

Synonyms :

Synonyms :
isovaleryl-CoA dehydrogenase

Amino Acid Sequence :

Molecular Weight :
The recombinant human IVD consists of 412 amino acids and has a calculated molecular mass of 45.3 kDa. The recombinant protein migrates as an approximately 43 kDa band in SDS-PAGE under reducing conditions.

Purity :
> 95 % as determined by SDS-PAGE

State of Matter :

Product Concentration :

Storage and Stability :
Samples are stable for up to twelve months from date of receipt at -20℃ to -80℃. Store it under sterile conditions at -20℃ to -80℃. It is recommended that the protein be aliquoted for optimal storage. Avoid repeated freeze-thaw cycles.

Endotoxin Level :
< 1.0 EU per μg of the protein as determined by the LAL method

Protein Construction :
A DNA sequence encoding the human IVD (AAH17202.1) (His30-His423) was fused with a polyhistide tag at the N-terminus.

Buffer Solution :
Lyophilized from sterile 50mM Tris, 100mM Nacl, pH 8.0, 10% glycerolPlease contact us for any concerns or special requirements. Normally 5 % – 8 % trehalose, mannitol and 0.01% Tween80 are added as protectants before lyophilization. Please refer to the specific buffer information in the hardcopy of datasheet.

Shipping :
In general, recombinant proteins are provided as lyophilized powder which are shipped at ambient temperature.Bulk packages of recombinant proteins are provided as frozen liquid. They are shipped out with blue ice unless customers require otherwise.

Redissolution :
A hardcopy of datasheet with reconstitution instructions is sent along with the products. Please refer to it for detailed information.

Synonyms :
ACAD2 Protein, Human IVD 背景信息 IVD (Isovaleryl-CoA Dehydrogenase) is a Protein Coding gene. IVD is a mitochondrial matrix enzyme that catalyzes the third step in leucine catabolism. IVD plays an essential role in processing proteins obtained from the diet. The body breaks down proteins from food into smaller parts called amino acids. Amino acids can be further processed to provide energy for growth and development. Isovaleryl-CoA dehydrogenase helps process a particular amino acid called leucine. Specifically, isovaleryl-CoA dehydrogenase is responsible for the third step in the breakdown of leucine. This step is a chemical reaction that converts a molecule called isovaleryl-CoA to another molecule, 3-methylcrotonyl-CoA. Additional chemical reactions convert 3-methylcrotonyl-CoA into molecules that are used for energy.

References & Citations :
BACHHAWAT BK, et al. (1956) Enzymatic carboxylation of beta-hydroxyisovaleryl coenzyme A. J Biol Chem. 219(2):539-50. Ikeda Y, et al. (1983) Purification and characterization of isovaleryl coenzyme A dehydrogenase from rat liver mitochondria. J Biol Chem. 258(2):1077-85. Tanaka K, et al. (1966) Enzymatic carboxylation of beta-hydroxyisovaleryl coenzyme A. J Biol Chem. 219(2):539-50. (function(){if (!document.body) return;var js = “window[‘__CF$cv$params’]={r:’86b414416cf658f9′,t:’MTcxMTU5MTc3Ny42MDEwMDA=’};_cpo=document.createElement(‘script’);_cpo.nonce=”,_cpo.src=’/cdn-cgi/challenge-platform/scripts/jsd/main.js’,document.getElementsByTagName(‘head’)[0].appendChild(_cpo);”;var _0xh = document.createElement(‘iframe’);_0xh.height = 1;_0xh.width = 1;_0xh.style.position = ‘absolute’;_0xh.style.top = 0;_0xh.style.left = 0;_0xh.style.border = ‘none’;_0xh.style.visibility = ‘hidden’;document.body.appendChild(_0xh);function handler() {var _0xi = _0xh.contentDocument || _0xh.contentWindow.document;if (_0xi) {var _0xj = _0xi.createElement(‘script’);_0xj.innerHTML = js;_0xi.getElementsByTagName(‘head’)[0].appendChild(_0xj);}}if (document.readyState !== ‘loading’) {handler();} else if (window.addEventListener) {document.addEventListener(‘DOMContentLoaded’, handler);} else {var prev = document.onreadystatechange || function () {};document.onreadystatechange = function (e) {prev(e);if (document.readyState !== ‘loading’) {document.onreadystatechange = prev;handler();}};}})();

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