MaxLight™490 is a new Blue-Green photostable dye conjugate comparable to DyLight™488, Alexa Fluor™488 and offers better labeling efficiency, brighter imaging and increased immunodetection.
Parkinson is the second most common neurodegenerative disease after Alzheimers.
About 1 percent of people over the age of 65 and 3 percent of people over the age of 75 are affected by the disease.
The mutation is the most common cause of Parkinson's disease identified to date.
LRRK2, a genetic mutation, was recently found linked to about 5 percent of inherited cases of Parkinson's disease.
By high-resolution recombination mapping and candidate gene sequencing in 46 families, 6 disease-segregating mutations (5 missense and 1 putative splice site mutation).
It may be central to the pathogenesis of several major neurodegenerative disorders associated with parkinsonism.
LRRK2 belongs to the ROCO protein family and includes a protein kinase domain of the MAPKKK class and several other major functional domains.
Applications:Suitable for use in FLISA, Western Blot and Immunofluorescence.
Other applications not tested.
Recommended Dilution:Optimal dilutions to be determined by the researcher.
Storage and Stability:Store product at 4°C in the dark.
DO NOT FREEZE! Stable at 4°C for 12 months after receipt as an undiluted liquid.
Dilute required amount only prior to immediate use.
Further dilutions can be made in assay buffer.
Caution: MaxLight™490 conjugates are sensitive to light.
For maximum recovery of product, centrifuge the original vial prior to removing the cap.
Note: Applications are based on unconjugated antibody.
仕様
Size:100ul
Host:rabbit
Source Antibody:human
Grade:Affinity Purified
Purity:Purified by Protein A/G affinity chromatography.
Form:Supplied as a liquid in PBS, pH 7.2. No preservative added. Labeled with MaxLight™490.
Specificity:Recognizes human LRRK2. Species Crossreactivity: mouse
Isotype:IgG
Calc Applications Abbrev:FLISA IF WB
Calc Crossreactivity:Hu Mo
Immunogen:KLH-conjugated synthetic peptide mapping to a fragment of residues within amino acids 930-961 of human LRRK2, UniProt Accession #Q5S007.