Antibody data
- Antibody Data
- Antigen structure
- References [11]
- Comments [0]
- Validations [0]
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- Product number
- HPA038237 - Provider product page
- Provider
- Atlas Antibodies
- Proper citation
- Atlas Antibodies Cat#HPA038237, RRID:AB_10670660
- Product name
- Anti-TCOF1
- Antibody type
- Polyclonal
- Description
- Polyclonal Antibody against Human TCOF1, Gene description: Treacher Collins-Franceschetti syndrome 1, Alternative Gene Names: TCS, treacle, Validated applications: ICC, IHC, WB, Uniprot ID: Q13428, Storage: Store at +4°C for short term storage. Long time storage is recommended at -20°C.
- Reactivity
- Human
- Host
- Rabbit
- Conjugate
- Unconjugated
- Isotype
- IgG
- Vial size
- 100 µl
- Concentration
- 0.2 mg/ml
- Storage
- Store at +4°C for short term storage. Long time storage is recommended at -20°C.
- Handling
- The antibody solution should be gently mixed before use.
Submitted references FOSL1 is a key regulator of a super-enhancer driving TCOF1 expression in triple-negative breast cancer
Ribosome biosynthesis and Hedgehog activity are cooperative actionable signaling mechanisms in breast cancer following radiotherapy
Nucleolar Protein Treacle Is Important for the Efficient Growth of Mumps Virus
53BP1-mediated recruitment of RASSF1A to ribosomal DNA breaks promotes local ATM signaling.
Treacle and TOPBP1 control replication stress response in the nucleolus
TCOF1 upregulation in triple-negative breast cancer promotes stemness and tumour growth and correlates with poor prognosis
Treacle controls the nucleolar response to rDNA breaks via TOPBP1 recruitment and ATR activation
Interactome Rewiring Following Pharmacological Targeting of BET Bromodomains
Double-strand breaks in ribosomal RNA genes activate a distinct signaling and chromatin response to facilitate nucleolar restructuring and repair
Hypoosmotic stress induces R loop formation in nucleoli and ATR/ATM-dependent silencing of nucleolar transcription
The NBS1–Treacle complex controls ribosomal RNA transcription in response to DNA damage
He Q, Hu J, Huang H, Wu T, Li W, Ramakrishnan S, Pan Y, Chan K, Zhang L, Yang M, Wang X, Chin Y
Epigenetics & Chromatin 2024;17(1)
Epigenetics & Chromatin 2024;17(1)
Ribosome biosynthesis and Hedgehog activity are cooperative actionable signaling mechanisms in breast cancer following radiotherapy
Metge B, Alsheikh H, Chen D, Elhamamsy A, Hinshaw D, Chen B, Sleckman B, Samant R, Shevde L
npj Precision Oncology 2023;7(1)
npj Precision Oncology 2023;7(1)
Nucleolar Protein Treacle Is Important for the Efficient Growth of Mumps Virus
Wakata A, Katoh H, Kato F, Takeda M, Dutch R
Journal of Virology 2022;96(19)
Journal of Virology 2022;96(19)
53BP1-mediated recruitment of RASSF1A to ribosomal DNA breaks promotes local ATM signaling.
Tsaridou S, Velimezi G, Willenbrock F, Chatzifrangkeskou M, Elsayed W, Panagopoulos A, Karamitros D, Gorgoulis V, Lygerou Z, Roukos V, O'Neill E, Pefani DE
EMBO reports 2022 Aug 3;23(8):e54483
EMBO reports 2022 Aug 3;23(8):e54483
Treacle and TOPBP1 control replication stress response in the nucleolus
Velichko A, Ovsyannikova N, Petrova N, Luzhin A, Vorobjeva M, Gavrikov A, Mishin A, Kireev I, Razin S, Kantidze O
Journal of Cell Biology 2021;220(8)
Journal of Cell Biology 2021;220(8)
TCOF1 upregulation in triple-negative breast cancer promotes stemness and tumour growth and correlates with poor prognosis
Hu J, Lai Y, Huang H, Ramakrishnan S, Pan Y, Ma V, Cheuk W, So G, He Q, Geoffrey Lau C, Zhang L, Cho W, Chan K, Wang X, Rebecca Chin Y
British Journal of Cancer 2021;126(1):57-71
British Journal of Cancer 2021;126(1):57-71
Treacle controls the nucleolar response to rDNA breaks via TOPBP1 recruitment and ATR activation
Mooser C, Symeonidou I, Leimbacher P, Ribeiro A, Shorrocks A, Jungmichel S, Larsen S, Knechtle K, Jasrotia A, Zurbriggen D, Jeanrenaud A, Leikauf C, Fink D, Nielsen M, Blackford A, Stucki M
Nature Communications 2020;11(1)
Nature Communications 2020;11(1)
Interactome Rewiring Following Pharmacological Targeting of BET Bromodomains
Lambert J, Picaud S, Fujisawa T, Hou H, Savitsky P, Uusküla-Reimand L, Gupta G, Abdouni H, Lin Z, Tucholska M, Knight J, Gonzalez-Badillo B, St-Denis N, Newman J, Stucki M, Pelletier L, Bandeira N, Wilson M, Filippakopoulos P, Gingras A
Molecular Cell 2019;73(3):621-638.e17
Molecular Cell 2019;73(3):621-638.e17
Double-strand breaks in ribosomal RNA genes activate a distinct signaling and chromatin response to facilitate nucleolar restructuring and repair
Korsholm L, Gál Z, Lin L, Quevedo O, Ahmad D, Dulina E, Luo Y, Bartek J, Larsen D
Nucleic Acids Research 2019;47(15):8019-8035
Nucleic Acids Research 2019;47(15):8019-8035
Hypoosmotic stress induces R loop formation in nucleoli and ATR/ATM-dependent silencing of nucleolar transcription
Velichko A, Petrova N, Luzhin A, Strelkova O, Ovsyannikova N, Kireev I, Petrova N, Razin S, Kantidze O
Nucleic Acids Research 2019;47(13):6811-6825
Nucleic Acids Research 2019;47(13):6811-6825
The NBS1–Treacle complex controls ribosomal RNA transcription in response to DNA damage
Larsen D, Hari F, Clapperton J, Gwerder M, Gutsche K, Altmeyer M, Jungmichel S, Toledo L, Fink D, Rask M, Grøfte M, Lukas C, Nielsen M, Smerdon S, Lukas J, Stucki M
Nature Cell Biology 2014;16(8):792-803
Nature Cell Biology 2014;16(8):792-803
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