Cat. # | Size | Qty. | Price |
---|---|---|---|
74281SF | 100 µg |
|
REACTIVITY | H M R Hm Mk Dm Sc |
SENSITIVITY | Endogenous |
MW (kDa) | 62 |
Source/Isotype | Rabbit IgG |
Product Information
NOTE: Please see product datasheet or product webpage for appropriate antibody dilution^.
Step | Reagents | Time/Temperature | |
---|---|---|---|
1 | Dewax | BOND™ Dewax Solution, 100% Alcohol, BOND™ Wash Solution | Pre-programmed Leica® BOND™ |
2 | Antigen Retrieval | BOND™ Epitope Retrieval ER2 Solution | 20 min., 100˚C | Protocol: HIER 20 min with ER2 |
3 | Peroxide Block | Refine Detection Kit Peroxide Block* | 5 min. |
WASH | BOND™ Wash Solution | 3x 0:00 min. | |
4 | Protein Block (optional) | #5425 NGS or #15019 Animal-Free Blocking Solution | 20 min. |
5 | Primary Antibody^ | Dilute in #8112 SignalStain® Antibody Diluent | 30 min. |
WASH | BOND™ Wash Solution | 3x 2:00 min. | |
NA | Post Primary Mouse Linker | Refine Detection Kit Post Primary* | Not Applied |
6 | Secondary Detection | Refine Detection Kit Polymer* | 10 min. |
WASH | BOND™ Wash Solution/Deionized Water | Custom (see below) | |
7a | Visualization | Refine Detection Kit Mixed DAB Refine* | 0:00 min. |
7b | Visualization | Refine Detection Kit Mixed DAB Refine* | 10 min. |
WASH | Deionized Water | 3x 0:00 min. | |
8 | Counterstain | Refine Detection Kit Hematoxylin* | 5 min. |
WASH | Deionized Water | 0:00 min. | |
WASH | BOND™ Wash Solution | 0:00 min. | |
WASH | Deionized Water | 0:00 min. | |
9 | Dehydration (Offline): | ||
Incubate sections in 95% ethanol two times for 10 seconds each. | |||
Repeat in 100% ethanol, incubating sections two times for 10 seconds each. | |||
Repeat in xylene, incubating sections two times for 10 seconds each. | |||
10 | Mount sections with coverslips and #84583 SignalStain® Mounting Medium | ||
Optional Custom wash: | BOND™ Wash Solution | 2:00 | |
BOND™ Wash Solution | Dispenser Type: OPEN 0:00 | ||
BOND™ Wash Solution | 2:00 | ||
BOND™ Wash Solution | Dispenser Type: OPEN 0:00 | ||
BOND™ Wash Solution | 0:00 | ||
Deionized Water | 0:00 |
*Reagent included in BOND™ Polymer Refine Detection Kit (Catalog No: DS9800)
LEICA® is a registered trademark of Leica Microsystems IR GmbH.
BOND™ is a trademark of Leica Biosystems Melbourne Pty. Ltd. No affiliation or sponsorship between CST and Leica Microsystems IR GmbH or Leica Biosystems Melbourne Pty. Ltd is implied.
posted August 2018
revised September 2018
Protocol Id: 1444
Human, Mouse, Rat, Hamster, Monkey, D. melanogaster, S. cerevisiae
Chicken, Zebrafish, Bovine, Pig
Monoclonal antibody is produced by immunizing animals with a synthetic peptide corresponding to residues surrounding Thr172 of human AMPKα protein.
AMP-activated protein kinase (AMPK) is highly conserved from yeast to plants and animals and plays a key role in the regulation of energy homeostasis (1). AMPK is a heterotrimeric complex composed of a catalytic α subunit and regulatory β and γ subunits, each of which is encoded by two or three distinct genes (α1, 2; β1, 2; γ1, 2, 3) (2). The kinase is activated by an elevated AMP/ATP ratio due to cellular and environmental stress, such as heat shock, hypoxia, and ischemia (1). The tumor suppressor LKB1, in association with accessory proteins STRAD and MO25, phosphorylates AMPKα at Thr172 in the activation loop, and this phosphorylation is required for AMPK activation (3-5). AMPKα is also phosphorylated at Thr258 and Ser485 (for α1; Ser491 for α2). The upstream kinase and the biological significance of these phosphorylation events have yet to be elucidated (6). The β1 subunit is post-translationally modified by myristoylation and multi-site phosphorylation including Ser24/25, Ser96, Ser101, Ser108, and Ser182 (6,7). Phosphorylation at Ser108 of the β1 subunit seems to be required for AMPK activation, while phosphorylation at Ser24/25 and Ser182 affects AMPK localization (7). Several mutations in AMPKγ subunits have been identified, most of which are located in the putative AMP/ATP binding sites (CBS or Bateman domains). Mutations at these sites lead to reduction of AMPK activity and cause glycogen accumulation in heart or skeletal muscle (1,2). Accumulating evidence indicates that AMPK not only regulates the metabolism of fatty acids and glycogen, but also modulates protein synthesis and cell growth through EF2 and TSC2/mTOR pathways, as well as blood flow via eNOS/nNOS (1).
Explore pathways related to this product.
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