Anti-68kDa Neurofilament/NF-L antibody [1B11]
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(1 Publication)
Mouse Monoclonal 68kDa Neurofilament/NF-L antibody. Suitable for WB, IHC-FoFr and reacts with Cow, Rat, Mouse samples. Cited in 1 publication. Immunogen corresponding to Native Full Length Protein corresponding to Human NEFL.
View Alternative Names
NF68, NFL, NEFL, Neurofilament light polypeptide, NF-L, 68 kDa neurofilament protein, Neurofilament triplet L protein
- IHC-FoFr
Supplier Data
Immunohistochemistry (PFA perfusion fixed frozen sections) - Anti-68kDa Neurofilament/NF-L antibody [1B11] (AB315188)
Immunostaining of a coronal section of the spinal cord of a rat given a midline C4 contusion injury three days previously. Sections were stained with RPCA-NF-L-ct in red and ab315188 in green. ab315188 stains prominent aggregates of material concentrated in the lateral funiculi and the dorsal columns but seen in lesser amounts throughout the section. These are degenerating and degenerated axons damaged by the C4 lesion. The RPCA-NF-L-ct antibody binds the C-terminal “tail” region of NF-L which is absent or destroyed during degeneration, so the ab315188 positive profiles are largely negative for RPCA-NF-L-ct.
- WB
Supplier Data
Western blot - Anti-68kDa Neurofilament/NF-L antibody [1B11] (AB315188)
Western blot analysis of different tissue lysates using ab315188, dilution 1 : 20,000 in green : [1] protein standard, [2] rat brain, [3] mouse brain and [4] cow cerebellum. Strong band at about 68-70kDa corresponds to NF-L protein, with the cow protein appearing slightly larger in molecular size as expected. Low molecular weight bands detected in cow brain sample are likely post mortem proteolytic forms of NF-L.
All lanes:
Western blot - Anti-68kDa Neurofilament/NF-L antibody [1B11] (ab315188) at 1/20000 dilution
Lane 2:
Rat brain tissue lysate
Lane 3:
Mouse brain tissue lysate
Lane 4:
Cow cerebellum tissue lysate
Observed band size: 68-70 kDa
false
Reactivity data
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Supplementary information
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Biological function summary
The neurofilament protein functions to stabilize the axonal diameter thereby affecting neuronal conductivity. It integrates into a complex with other neurofilament proteins and related molecules forming cross-bridges that aid in strengthening the cellular structure. This protein-protein interaction is vital for normal neuronal function and efficient nerve signal transmission.
Pathways
Neurofilament proteins contribute to cellular processes within the nervous system. It participates in the axonal transport pathway which includes the transport of synaptic vesicles and organelles along axons. This movement is facilitated by interactions with motor proteins like kinesin and dynein which help in moving these materials to their destinations. Additionally NF-L connects to actin filaments collaborating to sustain neuronal shape and function.
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Publications (1)
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Bioactive materials 39:375-391 PubMed38846528
2024
Applications
Unspecified application
Species
Unspecified reactive species
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