Human Serine Protease HTRA2 Mitochondrial (HTRA2) ELISA Kit from MyBioSource.com

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Human Serine Protease HTRA2 Mitochondrial (HTRA2) ELISA Kit

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Description

This Human Serine Protease HTRA2 Mitochondrial (HTRA2) ELISA Kit is intended for quantitative detection of human HTRA2 in cell culture supernates, serum and plasma (heparin, EDTA). Strip well format. Reagents for up to 96 tests.
This human HTRA2 ELISA Kit was based on standard sandwich enzyme-linked immune-sorbent assay technology. A monoclonal antibody from mouse specific for HTRA2 has been precoated onto 96-well plates. Standards (Expression system for standard: E Coli, Immunogen sequence: A134-E458) and test samples are added to the wells, a biotinylated detection polyclonal antibody from goat specific for HTRA2 is added subsequently and then followed by washing with PBS or TBS buffer. Avidin-Biotin-Peroxidase Complex was added and unbound conjugates were washed away with PBS or TBS buffer. HRP substrate TMB was used to visualize HRP enzymatic reaction. TMB was catalyzed by HRP to produce a blue color product that changed into yellow after adding acidic stop solution. The density of yellow is proportional to the human Fibronectin amount of sample captured in plate.
The capture antibody is a monoclonal antibody from mouse, the detection antibody is a biotinylated detection polyclonal antibody from goat. Expression system for standard: Serine protease HTRA2, mitochondrial is an enzyme that in humans is encoded by the HTRA2 gene. It is mapped to 2p13.1. This gene encodes a serine protease. The protein has been localized in the endoplasmic reticulum and interacts with an alternatively spliced form of mitogen-activated protein kinase 14. The protein has also been localized to the mitochondria with release to the cytosol following apoptotic stimulus. The protein is thought to induce apoptosis by binding the apoptosis inhibitory protein baculoviral IAP repeat-containing 4. Nuclear localization of this protein has also been observed. Alternate splicing of this gene results in multiple transcript variants encoding different isoforms