MED17 antibody (AA 4-561) (Fluoro594)
Quick Overview for MED17 antibody (AA 4-561) (Fluoro594) (ABIN8008587)
Target
See all MED17 AntibodiesReactivity
Host
Clonality
Conjugate
Application
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Binding Specificity
- AA 4-561
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Purpose
- Anti-MED17 Antibody Fluoro594 Conjugated
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Cross-Reactivity (Details)
- No cross-reactivity with other proteins.
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Purification
- Immunogen affinity purified.
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Immunogen
- E.coli-derived human MED17 recombinant protein (Position: V4-E561).
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Isotype
- IgG
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Application Notes
- Flow Cytometry, Optimal dilutions should be determined by end users.
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Restrictions
- For Research Use only
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Format
- Liquid
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Buffer
- Each vial contains 50 % glycerol, 0.9 % NaCl, 0.2 % Na2HPO4, 0.02 % Sodium azide.
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Preservative
- Sodium azide
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Precaution of Use
- This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
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Storage
- -20 °C
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Storage Comment
- At -20°C for one year from date of receipt. Avoid repeated freezing and thawing. Protect from light.
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Expiry Date
- 12 months
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- MED17 (Mediator Complex Subunit 17 (MED17))
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Alternative Name
- MED17
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Background
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Background: Mediator of RNA polymerase II transcription subunit 17 is an enzyme that in humans is encoded by the MED17 gene. The activation of gene transcription is a multistep process that is triggered by factors that recognize transcriptional enhancer sites in DNA. These factors work with co-activators to transcriptional initiation by the RNA polymerase II apparatus. The protein encoded by this gene is a subunit of the CRSP (cofactor required for SP1 activation) complex, which, along with TFIID, is required for efficient activation by SP1. This protein is also a component of other multisubunit complexes e.g. thyroid hormone receptor-(TR-) associated proteins which interact with TR and facilitate TR function on DNA templates in conjunction with initiation factors and cofactors.
Gene Full Name: mediator complex subunit 17
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Gene ID
- 9440
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UniProt
- Q9NVC6
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Pathways
- Intracellular Steroid Hormone Receptor Signaling Pathway, Stem Cell Maintenance, Regulation of Lipid Metabolism by PPARalpha
Target
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