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Alexa Fluor™ Plus recombinant antibodies are conjugated using new, proprietary dye chemistry so you can generate stunning data. Alexa Fluor™ Plus antibodies represent an advancement in fluorescent conjugate technology. Alexa Fluor™ Plus antibodies provide brighter signal compared to leading Alexa Fluor™ antibodies, providing you with better signal-to-noise for your critical experiments. These antibodies show better specificity and lot-to-lot consistency as these are recombinant antibodies, generated by cloning specific genes for the desired antibodies into an expression vector and expressed in vitro.
Using conjugate solutions: Centrifuge the protein conjugate solution briefly in a microcentrifuge before use; add only the supernatant to the experiment. This step will help eliminate any protein aggregates that may have formed during storage, thereby reducing nonspecific background staining.
It is recommended that the antibody be carefully titrated for optimal performance in the assay of interest.
Excitation: 553 nm; Emission: 568 nm; Laser: Yellow Laser
The Golgi apparatus, which participates in glycosylation and transport of proteins and lipids in the secretory pathway, consists of a series of stacked cisternae (flattened membrane sacs). Interactions between the Golgi and microtubules are thought to be important for the reorganization of the Golgi after it fragments during mitosis. This gene encodes one of the golgins, a family of proteins localized to the Golgi. This encoded protein has been postulated to play roles in the stacking of Golgi cisternae and in vesicular transport. Several alternatively spliced transcript variants of this gene have been described, but the full-length nature of these variants has not been determined.
仅用于科研。不用于诊断过程。未经明确授权不得转售。
蛋白别名: 130 kDa cis-Golgi matrix protein; GM130; GM130 autoantigen; golgi autoantigen, golgin subfamily a, 2; Golgi matrix protein GM130; Golgin subfamily A member 2; Golgin-95; RP11-395P17.5; SY11 protein
基因别名: GM130; GOLGA2
UniProt ID: (Human) Q08379
Entrez Gene ID: (Human) 2801