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MABE1084

Sigma-Aldrich

Anti-Topoisomerase I-DNA Covalent Complexes Antibody, clone 1.1A

clone 1.1A, from mouse

Synonyme(s) :

Topoisomerase I-DNA covalent complex, DNA topoisomerase 1-DNA covalent complex, Topo I-DNA covalent complex, TopoI cc, TopoIcc

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About This Item

Code UNSPSC :
12352203
eCl@ss :
32160702
Nomenclature NACRES :
NA.41

Source biologique

mouse

Niveau de qualité

Forme d'anticorps

purified antibody

Type de produit anticorps

primary antibodies

Clone

1.1A, monoclonal

Espèces réactives

human, mouse

Technique(s)

ELISA: suitable
dot blot: suitable
flow cytometry: suitable
immunocytochemistry: suitable

Isotype

IgG2bκ

Numéro d'accès NCBI

Numéro d'accès UniProt

Conditions d'expédition

wet ice

Modification post-traductionnelle de la cible

unmodified

Informations sur le gène

human ... TOP1(7150)

Description générale

DNA topoisomerase 1 (EC 5.99.1.2; UniProt P11387; also known as DNA topoisomerase I, Topo I) is encoded by the TOP1 (also known as TOPI) gene (Gene ID 7150) in human. ′′′ One supercoil is removed during each round of Topo I-catalyzed nicking and resealing. Camptothecins are widely used for cancer treatment, these drugs intercalate into DNA at the topo I active site, inhibiting the religation step of the enzyme and shifting the equilibrium toward covalent topo I-DNA complexes rather than free topo I and DNA. Interaction of these drug-stabilized covalent topo I-DNA complexes with advancing replication forks or transcription complexes causse further DNA damage and eventual cell death.

Spécificité

Clone 1.1A specifically recognizes topoisomerase I (Topo I) in DNA covalent complexes, but not non-DNA complexed, free Topo I by detecting topo I active site Tyr723 phosphorylation (Patel, A.G., et al, (2016). 44(6):2816-2826).

Immunogène

KLH-conjugated linear peptide corresponding to human Topo I target site sequence with phosphorylated Tyr723.
Épitope : Topo I pTyr723.

Application

Analyse par cytométrie en flux : µ

µ

µ

A representative lot detected the Topotecan-/TPT-stablized topoisomerase I/DNA covalent complexes, but not free topoisomerase I (non-DNA complexed) by slot blot using CsCl2 gradient-fractionated lysates from TPT-treated and untreated A549 cells (Patel, A.G., et al, (2016).

A representative lot detected a Topotecan (TPT) dose-dependent increase of TPT-stabilized topoisomerase I/DNA covalent complexes in lysates from TPT-treated A549 and HCT116 cells by slot blot (Patel, A.G., et al, (2016).

A representative lot detected stabilized topoisomerase I/DNA covalent complexes in lysates from A549 cells treated with Camptothecins (CPT, SN-38, TPT) or Indenoisoquinolines (NSC 314622, NSC 725776, NSC 743400), but not nucleoside analogues (cytarabine and gemcitabine) (Patel, A.G., et al, (2016).

A representative lot detected the immunogen peptide corresponding to topoisomerase I active site sequence with phosphorylated Tyr723, but not the peptide with non-phosphorylated Tyr273 by direct (non-sandwich) ELISA (Patel, A.G., et al, (2016).

A representative lot detected a dose-dependent increase of non-nucleolar topoisomerase I/DNA covalent complex loci in Topotecan-/TPT-treated A549 cells, while the small number of loci in untreated cells were seen only in nucleoli (Patel, A.G., et al, (2016).

A representative lot detected a temporally and spatially distinct nuclear loci formation of topoisomerase I/DNA covalent complexes from those of phospho-H2AX and Rad51 in Topotecan-/TPT-treated A549 cells (Patel, A.G., et al, (2016). 44(6):2816-2826).
Anti-Topoisomerase I-DNA Covalent Complexes Antibody, clone 1.1A is an antibody against Topoisomerase I-DNA Covalent Complexes for use in Immunocytochemistry, Flow Cytometry, Dot Blot, ELISA.
Domaine de recherche
Épigénétique et fonction nucléaire
Sous-domaine de recherche
Biologie de la chromatine

Qualité



µ

Description de la cible

90,7 kDa (poids déterminé par calcul).

Forme physique

κ
Format : Produit purifié
Produit purifié sur protéine G.

Stockage et stabilité

Stable entre 2 et 8 °C pendant 1 an à compter de la date de réception.

Autres remarques

Concentration : Voir la fiche technique du lot concerné.

Clause de non-responsabilité

Sauf indication contraire dans notre catalogue ou toute autre documentation associée au(x) produit(s), nos produits sont uniquement destinés à la recherche et ne sauraient être utilisés à d'autres fins, ce qui inclut, sans s'y limiter, les utilisations commerciales non autorisées, les utilisations diagnostiques in vitro, les utilisations thérapeutiques ex vivo ou in vivo, ou tout type de consommation ou d'application chez l'être humain ou chez l'animal.

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Code de la classe de stockage

12 - Non Combustible Liquids

Classe de danger pour l'eau (WGK)

WGK 1

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


Certificats d'analyse (COA)

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Consulter la Bibliothèque de documents

Shih-Chieh Chiang et al.
Science advances, 3(4), e1602506-e1602506 (2017-05-17)
Breakage of one strand of DNA is the most common form of DNA damage. Most damaged DNA termini require end-processing in preparation for ligation. The importance of this step is highlighted by the association of defects in the 3'-end processing
Angela M Mabb et al.
PloS one, 11(5), e0156439-e0156439 (2016-05-28)
Topoisomerase 1 (TOP1) inhibitors, including camptothecin and topotecan, covalently trap TOP1 on DNA, creating cleavage complexes (cc's) that must be resolved before gene transcription and DNA replication can proceed. We previously found that topotecan reduces the expression of long (>100
Amy Flor et al.
Cell chemical biology, 28(6), 776-787 (2020-12-23)
Topoisomerase 1 (Top1) reversibly nicks chromosomal DNA to relax strain accumulated during transcription, replication, chromatin assembly, and chromosome condensation. The Top1 poison camptothecin targets cancer cells by trapping the enzyme in the covalent complex Top1cc, tethered to cleaved DNA by
Syed Moiz Ahmed et al.
PloS one, 14(5), e0215696-e0215696 (2019-05-09)
The transient build-up of DNA supercoiling during the translocation of replication forks threatens genome stability and is controlled by DNA topoisomerases (TOPs). This crucial process has been exploited with TOP poisons for cancer chemotherapy. However, pinpointing cellular determinants of the
Laetitia Mouly et al.
Cell death & disease, 9(9), 931-931 (2018-09-14)
RHO GTPases regulate essential functions such as the organization of the actin cytoskeleton. The classic members cycle between an active GTP-bound and an inactive GDP-bound conformation whereas atypical members are predominantly GTP-bound. Besides their well-established role, the classic RHO GTPases

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