GLUT-1 / PE / REAL763

Product Details
Description Clone REAL763 is an antibody fragment derived from the full GLUT1 antibody molecule. It displays no binding to Fc receptors. The recombinantly engineered antibody fragments are multimerized to form the REAdye_lease Complex to bind markers with high avidity. | Clone REAL763 recognizes the human GLUT1 antigen, an insulin-dependent integral membrane protein that is also known as glucose transporter type 1, HepG2 glucose transporter or SLC2A1. GLUT1 is mainly found in erythrocytes and in the central nervous system and has a broad substrate specificity. Mutations in the SLC2A1 can lead to glucose transporter type 1 deficiency syndrome (GLUT1DS), which is characterised by deficient glucose transport over the blood-brain barrier and reduced glucose availability in the brain. This can lead to a wide phenotypic variability e.g. microcephaly, delayed development, epilepsy, movement disorders, and cognitive impairment. | For removal of REAdye_lease fluorochromes for optional relabeling with different fluorochrome-conjugated REAdye_lease antibodies use the REAlease Support Kit (130-120-675). |
Conjugate PE
Clone REAL763
Target Species Human
Applications MICS (MACSima Imaging Cyclic Staining), IF, IHC
Supplier Miltenyi Biotec
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About GLUT-1
This gene encodes a major glucose transporter in the mammalian blood-brain barrier. The encoded protein is found primarily in the cell membrane and on the cell surface, where it can also function as a receptor for human T-cell leukemia virus (HTLV) I and II. Mutations in this gene have been found in a family with paroxysmal exertion-induced dyskinesia. [provided by RefSeq, Apr 2013]
About PE
Phycoerythrin (PE, R-PE) is a red-emitting fluorescent protein-chromophore complex that can be excited the 488-nm blue, 532-nm green, or 561-nm yellow-green laser with increasing efficiency and captured with a 586/14 nm bandpass filter. PE has an excitation peak at 565 nm and an emission peak at 578 nm. PE is 240kD in size and has an extinction coefficient of ~2x10^6 which makes it one of the brightest fluorophores available and a potent donor upon which to build tandem fluorophores with longer Stoke's Shifts.
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