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toxA Produkte

(Clostridium Difficile A Toxin (toxA))

Kategorien

antibodies-online.com steht für hochwertige Forschungsprodukte. Suchen, finden und bestellen Sie Tools mit umfangreichen Validierungsdaten, Bildern, Referenzen. Unser wissenschaftlicher Kundenservice steht Ihnen jederzeit zur Verfügung, wenn Sie Fragen zur Auswahl oder Anwendung unserer Produkte haben.

Empfohlene toxA Antikörper

Produkt
Reaktivität
Applikation
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Clostridium difficile
Applikation ELISA
Validierungen
Kat. Nr. ABIN7478630
Menge 100 μg
Datenblatt Datenblatt
Reaktivität Clostridium difficile
Applikation ELISA
Validierungen
Kat. Nr. ABIN7478628
Menge 100 μg
Datenblatt Datenblatt
Reaktivität Clostridium difficile
Applikation ELISA, IF, WB, IHC
Validierungen
Kat. Nr. ABIN2137827
Menge 200 μg
Datenblatt Datenblatt

Empfohlene toxA Proteine

Produkt
Reaktivität
Source
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Clostridium difficile
Source Escherichia coli (E. coli)
Validierungen
Kat. Nr. ABIN7385256
Menge 100 μg
Datenblatt Datenblatt
Reaktivität Clostridium difficile
Source Clostridium difficile
Validierungen
Kat. Nr. ABIN7385255
Menge 100 μg
Datenblatt Datenblatt

Neueste Publikationen zu unseren toxA Produkten

Oliveira, Ribis, Garrett, Trzilova, Kim, Sekulovic, Mead, Pak, Zhu, Deikus, Touchon, Lewis-Sandari, Beckford, Zeitouni, Altman, Webster, Oussenko, Bunyavanich, Aggarwal, Bashir, Patel, Wallach et al.: "Epigenomic characterization of Clostridioides difficile finds a conserved DNA methyltransferase that mediates sporulation and pathogenesis. ..." in: Nature microbiology, Vol. 5, Issue 1, pp. 166-180, (2020) (PubMed).

Daou, Wang, Levdikov, Nandakumar, Livny, Bouillaut, Blagova, Zhang, Belitsky, Rhee, Wilkinson, Sun, Sonenshein: "Impact of CodY protein on metabolism, sporulation and virulence in Clostridioides difficile ribotype 027." in: PLoS ONE, Vol. 14, Issue 1, pp. e0206896, (2019) (PubMed).

Edwards, Anjuwon-Foster, McBride: "RstA Is a Major Regulator of Clostridioides difficile Toxin Production and Motility." in: mBio, Vol. 10, Issue 2, (2019) (PubMed).

Woods, Edwards, Childress, Jones, McBride: "The C. difficile clnRAB operon initiates adaptations to the host environment in response to LL-37." in: PLoS pathogens, Vol. 14, Issue 8, pp. e1007153, (2019) (PubMed).

Anjuwon-Foster, Maldonado-Vazquez, Tamayo: "Characterization of Flagellum and Toxin Phase Variation in Clostridioides difficile Ribotype 012 Isolates." in: Journal of bacteriology, Vol. 200, Issue 14, (2018) (PubMed).

Anjuwon-Foster, Tamayo: "A genetic switch controls the production of flagella and toxins in Clostridium difficile." in: PLoS genetics, Vol. 13, Issue 3, pp. e1006701, (2017) (PubMed).

Kroh, Chandrasekaran, Rosenthal, Woods, Jin, Ohi, Nyborg, Rainey, Warrener, Spiller, Lacy: "Use of a neutralizing antibody helps identify structural features critical for binding ofClostridium difficiletoxin TcdA to the host cell surface." in: The Journal of biological chemistry, Vol. 292, Issue 35, pp. 14401-14412, (2017) (PubMed).

Edwards, Tamayo, McBride: "A novel regulator controls Clostridium difficile sporulation, motility and toxin production." in: Molecular microbiology, Vol. 100, Issue 6, pp. 954-71, (2016) (PubMed).

Nawrocki, Edwards, Daou, Bouillaut, McBride: "CodY-Dependent Regulation of Sporulation in Clostridium difficile." in: Journal of bacteriology, Vol. 198, Issue 15, pp. 2113-30, (2016) (PubMed).

Childress, Edwards, Nawrocki, Anderson, Woods, McBride: "The Phosphotransfer Protein CD1492 Represses Sporulation Initiation in Clostridium difficile." in: Infection and immunity, Vol. 84, Issue 12, pp. 3434-3444, (2016) (PubMed).

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