ACE+HILIC
Numéro de catalogue:
(BOSSBS-9454R-FITC)
Fournisseur:
Bioss
Description:
Acyl-coenzyme A synthetases (ACSs) are a large family of related enzymes known to catalyze the fundamental initial reaction in fatty acid metabolism. The ACS family is roughly characterized based on fatty acid chain length preference amongst different members. The nomenclature in the ACS family reflects this relationship and includes short-chain ACS (ACSS), medium-chain ACS (ACSM), long-chain ACS (ACSL) and very long-chain ACS (ACSVL). ACSVL family members are capable of activating both long (LCFAs) and very long-chain fatty acids (VLCFAs). There are six members of the human ACSVL subfamily, which have been described as solute carrier family 27A (SLC27A) gene products. They represent a group of evolutionarily conserved fatty acid transport proteins (FATPs) recognized for their role in facilitating translocation of long-chain fatty acids across the plasma membrane. The family nomenclature has recently been unified with their respective acyl-CoA synthetase family designations: ACSVL1 (FATP2), ACSVL2 (FATP6), ACSVL3 (FATP3), ACSVL4 (FATP1), ACSVL5 (FATP4) and ACSVL6 (FATP5). ACSVLs have unique expression patterns and are found in major organs of fatty acid metabolism, such as adipose tissue, liver, heart and kidney. ACSVL2 is a 619 amino acid multi-pass membrane protein. Encoded by a gene that maps to human chromosome 5q23.3, ACSVL2 may function as the predominant fatty acid protein transporter in heart.
UOM:
1 * 100 µl
Numéro de catalogue:
(BOSSBS-9454R-A488)
Fournisseur:
Bioss
Description:
Acyl-coenzyme A synthetases (ACSs) are a large family of related enzymes known to catalyze the fundamental initial reaction in fatty acid metabolism. The ACS family is roughly characterized based on fatty acid chain length preference amongst different members. The nomenclature in the ACS family reflects this relationship and includes short-chain ACS (ACSS), medium-chain ACS (ACSM), long-chain ACS (ACSL) and very long-chain ACS (ACSVL). ACSVL family members are capable of activating both long (LCFAs) and very long-chain fatty acids (VLCFAs). There are six members of the human ACSVL subfamily, which have been described as solute carrier family 27A (SLC27A) gene products. They represent a group of evolutionarily conserved fatty acid transport proteins (FATPs) recognized for their role in facilitating translocation of long-chain fatty acids across the plasma membrane. The family nomenclature has recently been unified with their respective acyl-CoA synthetase family designations: ACSVL1 (FATP2), ACSVL2 (FATP6), ACSVL3 (FATP3), ACSVL4 (FATP1), ACSVL5 (FATP4) and ACSVL6 (FATP5). ACSVLs have unique expression patterns and are found in major organs of fatty acid metabolism, such as adipose tissue, liver, heart and kidney. ACSVL2 is a 619 amino acid multi-pass membrane protein. Encoded by a gene that maps to human chromosome 5q23.3, ACSVL2 may function as the predominant fatty acid protein transporter in heart.
UOM:
1 * 100 µl
Fournisseur:
VWR Chemicals
Description:
tri-Sodium phosphate dodécahydraté 98.0-102.0%, AnalaR NORMAPUR® Reag. Ph.Eur., ACS
Fournisseur:
Thermo Scientific
Description:
Potassium carbonate 1,5-hydraté 98.5-101.0% ACS
Fournisseur:
Thermo Scientific
Description:
Bleu de méthylthymol, sel de sodium ACS Indicateur de Zinc
Fournisseur:
TCI
Description:
N-Acetyl-L-phenylalanine ≥99.0% (par analyse titrimétrique)
Numéro de catalogue:
(BOSSBS-0439R-A488)
Fournisseur:
Bioss
Description:
Angiotensin Converting enzyme is involved in catalyzing the conversion of angiotensin I into a physiologically active peptide angiotensin II. Angiotensin II is a potent vasopressor and aldosterone-stimulating peptide that controls blood pressure and fluid-electrolyte balance. This enzyme plays a key role in the renin-angiotensin system. ACE converts angiotensin I to angiotensin II by release of the terminal His-Leu, this results in an increase of the vasoconstrictor activity of angiotensin. Also able to inactivate bradykinin, a potent vasodilatator. ACE exists in two forms, a 170KD somatic form and a 90KD germinal form. The somatic form is expressed by endothelial cells (especially those of lung capillaries and arterioles), epithelial cells (especially in proximal renal tubules and small intestine), by some neuronal cells and variably by some macrophages and T lymphocytes. The germinal form is expressed by spermatozoa.
UOM:
1 * 100 µl
Numéro de catalogue:
(BOSSBS-0439R-FITC)
Fournisseur:
Bioss
Description:
Angiotensin Converting enzyme is involved in catalyzing the conversion of angiotensin I into a physiologically active peptide angiotensin II. Angiotensin II is a potent vasopressor and aldosterone-stimulating peptide that controls blood pressure and fluid-electrolyte balance. This enzyme plays a key role in the renin-angiotensin system. ACE converts angiotensin I to angiotensin II by release of the terminal His-Leu, this results in an increase of the vasoconstrictor activity of angiotensin. Also able to inactivate bradykinin, a potent vasodilatator. ACE exists in two forms, a 170KD somatic form and a 90KD germinal form. The somatic form is expressed by endothelial cells (especially those of lung capillaries and arterioles), epithelial cells (especially in proximal renal tubules and small intestine), by some neuronal cells and variably by some macrophages and T lymphocytes. The germinal form is expressed by spermatozoa.
UOM:
1 * 100 µl
Fournisseur:
Thermo Scientific
Description:
Orangé de xylénol, sel tétrasodique ACS
Fournisseur:
Thermo Scientific
Description:
Ammonium-cérium (IV) nitrate ≥98.5% ACS
Fournisseur:
Merck
Description:
Titriplex® III ACS, ISO, Reag. Ph. Eur. pour analyses, Supelco®
Numéro de catalogue:
(0232-500G)
Fournisseur:
VWR Chemicals
Description:
Ammonium-fer (III) sulfate dodécahydraté 98.5-102% ACS
UOM:
1 * 500 g
Numéro de catalogue:
(TCIAA2652-1G)
Fournisseur:
TCI
Description:
Nε-acetyl-L-lysine ≥98.0% (par analyse titrimétrique)
UOM:
1 * 1 g
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