Mouse Muscle, Skeletal, Receptor Tyrosine Kinase (MUSK) Protein

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Description
Mouse Muscle, Skeletal, Receptor Tyrosine Kinase (MUSK) is a recombinant Mouse protein produced in a Prokaryotic expression system (E. coli).
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Product specifications
Category | Proteins and Peptides |
Immunogen Target | Muscle, Skeletal, Receptor Tyrosine Kinase (MUSK) |
Host | E. coli |
Origin | Mouse |
Conjugation | Unconjugated |
Observed MW | Molecular Weight: Calculated MW: 31.1 kDa Concentration: Prior to lyophilization: 200 µg/ml Sequence Fragment: Cys517-Arg766 Tag: N-terminal His tag |
Expression | Recombinant |
Purity | > 95% |
Size 1 | 10 µg |
Size 2 | 50 µg |
Size 3 | 100 µg |
Size 4 | 200 µg |
Size 5 | 500 µg |
Form | Lyophilized To keep the original salt concentration, we recommend reconstituting to the original concentration prior to lyophilization (see Concentration) in ddH2O. If a lower concentration is required, dilute in PBS, pH 7.4. If a higher concentration is required, the product can be reconstituted directly in PBS, pH 7.4, though please note that this will change the overall salt concentration. The stock concentration should be between 0.1-1.0 mg/ml. Do not vortex. |
Tested Applications | WB, SDS-PAGE |
Buffer | Prior to lyophilization: PBS, pH 7.4, containing 0.01% Sarcosyl, 1 mM DTT, 5% Trehalose and Proclin-300. |
Availability | Shipped within 5-7 working days. |
Storage | Store at 2-8 °C for up to one month. Store at -80 °C for up to one year. Avoid repeated freeze/thaw cycles. |
Dry Ice | No |
UniProt ID | Q61006 |
Gene ID | 18198 |
Alias | CMS9,FADS,FADS1,Muscle-specific tyrosine-protein kinase receptor,Muscle skeletal receptor tyrosine-protein kinase |
Background | Protein MUSK |
Status | RUO |
Note | This product is for research use only. Not for human consumption, cosmetic, therapeutic or diagnostic use. |
Descripción
Muscle-associated receptor tyrosine kinase (MUSK) is a critical protein in the formation and maintenance of the neuromuscular junction (NMJ), the synapse between motor neurons and muscle fibers. MUSK is essential for the proper functioning of the NMJ, playing a pivotal role in the signaling pathways that govern the assembly and stability of this specialized synapse. The NMJ is crucial for muscle contraction and overall motor function, and disruptions in MUSK function can lead to severe neuromuscular diseases. MUSK is encoded by the MUSK gene, located on chromosome 9 in humans. The protein belongs to the receptor tyrosine kinase family and is highly conserved across species, reflecting its essential role in muscle biology. MUSK activation is tightly regulated and involves interactions with several other proteins, including agrin, low-density lipoprotein receptor-related protein 4 (LRP4), and downstream effectors such as rapsyn.
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Receptor tyrosine kinase which plays a central role in the formation and the maintenance of the neuromuscular junction(NMJ), the synapse between the motor neuron and the skeletal muscle(PubMed:25537362). Recruitment of AGRIN by LRP4 to the MUSK signaling complex induces phosphorylation and activation of MUSK, the kinase of the complex. The activation of MUSK in myotubes regulates the formation of NMJs through the regulation of different processes including the specific expression of genes in subsynaptic nuclei, the reorganization of the actin cytoskeleton and the clustering of the acetylcholine receptors(AChR) in the postsynaptic membrane. May regulate AChR phosphorylation and clustering through activation of ABL1 and Src family kinases which in turn regulate MUSK. DVL1 and PAK1 that form a ternary complex with MUSK are also important for MUSK-dependent regulation of AChR clustering. May positively regulate Rho family GTPases through FNTA. Mediates the phosphorylation of FNTA which promotes prenylation, recruitment to membranes and activation of RAC1 a regulator of the actin cytoskeleton and of gene expression. Other effectors of the MUSK signaling include DNAJA3 which functions downstream of MUSK. May also play a role within the central nervous system by mediating cholinergic responses, synaptic plasticity and memory formation(By similarity).
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