Anti-Desmin antibody - Cytoskeleton Marker,Abcam,AB15200
The negative control tissue used to test this Ab was skin (squamous epithelial cells). Product Specifications Anti-Desmin antibody - Cytoskeleton Marker (ab15200) is a rabbit polyclonal antibody and is validated for use in ICC/IF, IHC-P in human, mouse, rat samples. Anti-Desmin antibody - Cytoskeleton Marker (ab15200) specifically detects Desmin (UniProt ID: P17661; Molecular weight: 53kDa) and is sold in 100 µL and 1 mL selling sizes. Quality and Validation Abcam's high quality validation processes ensure Anti-Desmin antibody - Cytoskeleton Marker (ab15200) has high sensitivity and specificity. Anti-Desmin antibody - Cytoskeleton Marker (ab15200) has been cited over 236 times in peer reviewed journals and is trusted by the scientific community. Anti-Desmin antibody - Cytoskeleton Marker (ab15200) has 26 independent reviews from customers.
Host
Rabbit
Reactivity
Mouse, Rat, Human
Application
IHC-P, ICC/IF
Platform ID
BAB218428191

Abcam
Contact
Tel: +44 (0)1223 696000
Fax: +44 (0)1223 215 215
Email:
Specifications
Scientific Background
Target data Muscle-specific type III intermediate filament essential for proper muscular structure and function. Plays a crucial role in maintaining the structure of sarcomeres, inter-connecting the Z-disks and forming the myofibrils, linking them not only to the sarcolemmal cytoskeleton, but also to the nucleus and mitochondria, thus providing strength for the muscle fiber during activity (PubMed : 25358400). In adult striated muscle they form a fibrous network connecting myofibrils to each other and to the plasma membrane from the periphery of the Z-line structures (PubMed : 24200904, PubMed : 25394388, PubMed : 26724190). May act as a sarcomeric microtubule-anchoring protein : specifically associates with detyrosinated tubulin-alpha chains, leading to buckled microtubules and mechanical resistance to contraction. Required for nuclear membrane integrity, via anchoring at the cell tip and nuclear envelope, resulting in maintenance of microtubule-derived intracellular mechanical forces (By similarity). Contributes to the transcriptional regulation of the NKX2-5 gene in cardiac progenitor cells during a short period of cardiomyogenesis and in cardiac side population stem cells in the adult. Plays a role in maintaining an optimal conformation of nebulette (NEB) on heart muscle sarcomeres to bind and recruit cardiac alpha-actin (By similarity). See full target information DES
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