ABCG2 Polyclonal / ATTO 594 /

Product Details
Supplier Stressmarq
Catalog #: SPC-1317D-A594 (View supplier product page)
Size 100 μl
Price $339.00
Antigen ABCG2
Clone
Host Rabbit
Isotype IgG
Conjugate ATTO 594
Target Species Human
Applications WB, IHC
Description Rabbit Anti-Human ABCG2 Polyclonal
About ABCG2 and ATTO 594
ABCG2 The membrane-associated protein encoded by this gene is included in the superfamily of ATP-binding cassette (ABC) transporters. ABC proteins transport various molecules across extra- and intra-cellular membranes. ABC genes are divided into seven distinct subfamilies (ABC1, MDR/TAP, MRP, ALD, OABP, GCN20, White). This protein is a member of the White subfamily. Alternatively referred to as a breast cancer resistance protein, this protein functions as a xenobiotic transporter which may play a major role in multi-drug resistance. It likely serves as a cellular defense mechanism in response to mitoxantrone and anthracycline exposure. Significant expression of this protein has been observed in the placenta, which may suggest a potential role for this molecule in placenta tissue. Multiple transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Apr 2012]
ATTO 594 ATTO 594 from ATTO-TEC has an excitation peak at 601 nm and an emission peak at 627 nm. ATTO 594 is a novel fluorescent label belonging to the class of rhodamine dyes. Characteristic features of the label are strong absorption, high fluorescence quantum yield, high thermal and photo-stability, and excellent water solubility. Thus ATTO 594 is highly suitable for single-molecule detection applications and high-resolution microscopy such as PALM, dSTORM, STED etc. Additionally the dye highly qualifies to be applied in flow cytometry (FACS), fluorescence in-situ hybridization (FISH) and many more. ATTO 594 is very hydrophilic and shows a very good water solubility. After coupling to a substrate the label carries a net electrical charge of -1.
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Reviews & Ratings
ATTO 594 Excitation and Emission Spectra