(3-Chloro-5-methylphenyl)cyclopropylmethanone
Supplier:
Thermo Scientific Chemicals
Description:
Pure Al₂O₃<sub> </sub>Aluminium oxide AL23.
Supplier:
G-Biosciences
Description:
Many commercial grade detergents contain elevated levels of sulfhydryl oxidizing agents, peroxides, salts and carbonyl compounds
Catalog Number:
(89138-166)
Supplier:
Biotium
Description:
is a selective inhibitor for the brain nitric oxide synthase (NOS).
Catalog Number:
(77679-210)
Supplier:
LGC STANDARDS
Description:
Chlormequat chloride D4 (1,1,2,2 D4) 100 µg/mL in Deuterium oxide, Dr. Ehrenstorfer, LGC Standards
Catalog Number:
(89215-862)
Supplier:
Bulbtronics
Description:
Mercury-free
Catalog Number:
(10081-302)
Supplier:
Proteintech
Description:
ERO1L, also named as ERO1-alpha, is an essential oxidoreductase that oxidizes proteins in the endoplasmic reticulum to produce disulfide bonds. It acts by oxidizing directly P4HB/PDI isomerase through a direct disulfide exchange. It does not act as a direct oxidant of folding substrate, but relies on P4HB/PDI to transfer oxidizing equivalent. Associates with ERP44 but not with GRP54, demonstrating that it does not oxidize all PDI related proteins and can discriminate between PDI and related proteins. Its reoxidation probably involves electron transfer to molecular oxygen via FAD. Glutathione may be required to regulate its activity in the endoplasmic reticulum. It may be responsible for a significant proportion of reactive oxygen species (ROS) in the cell, thereby being a source of oxidative stress. It is required for the folding of immunoglobulin proteins. Responsible for the release of the unfolded cholera toxin from reduced P4HB/PDI in case of infection by V.cholerae, thereby playing a role in retrotranslocation of the toxin. This antibody has no cross reaction to ERO1L.
Supplier:
Sartorius
Description:
Minisart NML standard syringe filter for clarification and sterilization of liquids and gases.
Catalog Number:
(89160-362)
Supplier:
Enzo Life Sciences
Description:
NAD+ (SIRT Substrate)
Supplier:
Strem Chemicals Inc
Description:
CAS #: 7789-59-5. Size: 25g.
Supplier:
THERMO FISHER SCIENTIFIC CHEMICALS
Description:
2-Chloro-2-oxo-1,3,2-dioxaphospholane 95%
Catalog Number:
(77004-946)
Supplier:
AMBEED, INC
Description:
2-(((Dimethylamino)(dimethyliminio)methyl)thio)pyridine 1-oxide tetrafluoroborate, Purity: 98%, CAS number: 255825-38-8, Appearance: Form: solid Colour: off-white, Storage: Inert atmosphere, Store in freezer, under -20C, Size: 5G
Supplier:
MP Biomedicals
Description:
β-NAD is one of the biologically active forms of nicotinic acid. It occurs in living cells primarily in the oxidized state. Serves as a coenzyme of the dehydrogenases, especially in the dehydrogenation of primary and secondary alcohols. NAD usually acts as a hydrogen acceptor, forming NADH which then serves as a hydrogen donor in the respiratory chain. (Merck Index, 12th Ed., No.6429)
Supplier:
Thermo Scientific Chemicals
Description:
Cytotoxic compound that causes oxidative base damage to nuclear DNA
Catalog Number:
(76108-974)
Supplier:
Bioss
Description:
Peroxiredoxin (Prx) is an antioxidant enzyme detoxifying reactive oxygen species and has a cysteine at the active site. Prx enzymes modulate various receptor signaling pathways and protect cells from oxidatively induced death. Peroxiredoxin 1 to 4 have two conserved Cys residues corresponding to Cys51 and Cys172 of mammalian Peroxiredoxin 1. The active site cysteine(Cys51) is oxidized to cysteine sulfenic acid(Cys51-SOH) when a peroxide is reduced. Because Cys51-SOH is unstable, it forms a disulfide with Cys172-SH which comes from the other subunit of the homodimer. The disulfide is then reduced back to the Prx active thiol form by the thioredoxin-thioredoxin reductase system. However, the formation of the disulfide is a slow process. Thus under oxidative stress conditions, the sulfenic intermediate(Cys51-SOH) can be easily over oxidized to cysteine sulfinic acid(Cys-SO2H) or cysteine sulfonic acid(Cys-SO3H) before it is able to form a disulfide. Recent studies suggest that over oxidized Prx can be reduced back to the active form during recovery after oxidative stress.
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