Human PPARGC1A (Peroxisome prolifeRator-activated receptor gamma coactivator 1-alpha) ELISA Kit

Este producto es parte de PPARGC1A -  PPARG coactivator 1 alpha
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935106861
info@markelab.com
name
Human PPARGC1A (Peroxisome prolifeRator-activated receptor gamma coactivator 1-alpha) ELISA Kit
category
ELISA Kits
provider
FineTest
reference
EH1326
tested applications
ELISA

Documents del producto

Instrucciones
Descargar
Data sheet

Product specifications

Category
ELISA Kits
Reactivity
Human
Detection Method
Colorimetric
Assay Data
4 hours
Assay Type
Sandwich ELISA, Double Antibody
Test Range
0.313-20ng/ml
Sensitivity
0.188ng/ml
Size 1
96T
Tested Applications
ELISA
Sample Type
Serum, Plasma, Cell Culture Supernatant, cell or tissue lysate, Other liquid samples
Availability
Shipped within 10-14 working days.
Storage
2-8 °C for 12 months
UniProt ID
Q9UBK2
Alias
LEM6,PGC1,PGC1A,PGC-1v,PPARGC1,PGC-1alpha,PGC-1(alpha)
Background
Elisa kits for PPARGC1A
Status
RUO

PPARGC1A, also known as PGC-1α (Peroxisome proliferator-activated receptor gamma coactivator 1-alpha), is a transcriptional coactivator that plays a central role in the regulation of cellular energy metabolism and mitochondrial biogenesis. PPARGC1A interacts with and coactivates various transcription factors, including peroxisome proliferator-activated receptor gamma (PPARG) and nuclear respiratory factors (NRFs), to regulate the expression of genes involved in energy metabolism, oxidative phosphorylation, and mitochondrial function. It promotes the transcription of genes involved in fatty acid oxidation, glucose metabolism, and thermogenesis, thereby enhancing cellular energy production and expenditure. PPARGC1A is a master regulator of mitochondrial biogenesis, the process by which new mitochondria are formed. It stimulates the expression of nuclear-encoded mitochondrial genes and activates signaling pathways involved in mitochondrial biogenesis, such as the PPAR signaling pathway and the AMP-activated protein kinase (AMPK) pathway. Increased PPARGC1A activity leads to the proliferation and remodeling of mitochondria, resulting in enhanced cellular energy capacity and metabolic efficiency.

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