Rad9 / DyLight 680 / OTI7B11
Product Details
Description | Mouse Rad9 antibody [DyLight 680] detects Human | |
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Conjugate | DyLight 680 | |
Clone | OTI7B11 | |
Target Species | Human | |
Applications | WB, IHC | |
Supplier | Novus Biologicals | |
Catalog # | Sign in to view product details, citations, and spectra | |
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About Rad9
This gene product is highly similar to Schizosaccharomyces pombe rad9, a cell cycle checkpoint protein required for cell cycle arrest and DNA damage repair. This protein possesses 3' to 5' exonuclease activity, which may contribute to its role in sensing and repairing DNA damage. It forms a checkpoint protein complex with RAD1 and HUS1. This complex is recruited by checkpoint protein RAD17 to the sites of DNA damage, which is thought to be important for triggering the checkpoint-signaling cascade. Alternatively spliced transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Aug 2011]
This gene product is highly similar to Schizosaccharomyces pombe rad9, a cell cycle checkpoint protein required for cell cycle arrest and DNA damage repair. This protein possesses 3' to 5' exonuclease activity, which may contribute to its role in sensing and repairing DNA damage. It forms a checkpoint protein complex with RAD1 and HUS1. This complex is recruited by checkpoint protein RAD17 to the sites of DNA damage, which is thought to be important for triggering the checkpoint-signaling cascade. Alternatively spliced transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Aug 2011]
About DyLight 680
DyLight™ 680 has an excitation peak at 692 nm and an emission peak at 712 nm, and is spectrally similar to Alexa Fluor™ 680 and Cy5.5. DyLight™ 680 is most commonly used in flow cytometery and fluorescence microscopy applications.
DyLight™ 680 has an excitation peak at 692 nm and an emission peak at 712 nm, and is spectrally similar to Alexa Fluor™ 680 and Cy5.5. DyLight™ 680 is most commonly used in flow cytometery and fluorescence microscopy applications.
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