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Thermo Fisher Scientific ATM Polyclonal Antibody, DyLight 650
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Thermo Fisher Scientific ATM Polyclonal Antibody, DyLight 650

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ATM 단백질을 인식하는 DyLight 650 결합 토끼 폴리클로날 항체. Western blot, IHC, ICC, Flow cytometry, ELISA에 사용 가능. 항원 친화 크로마토그래피로 정제. 4°C 암소 보관, 형광 파장 651/673 nm.

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마지막 업데이트 2025. 08. 04. 오후 10:36
Thermo Fisher Scientific PA522689 ATM Polyclonal Antibody, DyLight 650 50 ul pk판매 단위 pk ·
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721,400원VAT 포함 793,540원

Thermo Fisher Scientific · Thermo Fisher Scientific ATM Polyclonal Antibody, DyLight 650

Applications and Tested Dilutions

Application Tested Dilution Notes
Western Blot (WB) 1:500–1:1,000
Immunohistochemistry (Paraffin) (IHC (P)) Assay-dependent
Immunocytochemistry (ICC/IF) 1:100
Flow Cytometry (Flow) Assay-dependent
ELISA Assay-dependent

Product Specifications

Specification Description
Species Reactivity Dog, Human, Marsupial, Mouse, Rat
Host/Isotype Rabbit / IgG
Class Polyclonal
Type Antibody
Immunogen A fragment of human ATM protein expressed in E. coli. The fragment relates to the C-terminal region (within the last third of the protein sequence).
Conjugate DyLight™ 650
Excitation/Emission Max 651/673 nm
Form Liquid
Concentration 1 mg/mL
Purification Antigen affinity chromatography
Storage Buffer 50 mM sodium borate
Contains No preservative
Storage Conditions 4°C, store in dark
Shipping Conditions Ambient (domestic); Wet ice (international)
RRID AB_11152632

Target Information

Ataxia-telangiectasia Mutated (ATM) is a protein belonging to the PI3/PI4 kinase family. Ataxia-telangiectasia is a rare autosomal recessive disorder characterized by progressive neurologic degeneration, immune deficiency, and increased risk of lymphoid cancer. The ATM gene encodes a protein in the phosphoinositide 3-kinase (PI3K) superfamily, functioning as a protein kinase with downstream targets such as P53, Mdm2, BRCA1, and SMC1.

ATM plays a critical role in repairing double-stranded DNA breaks caused by ionizing radiation and other mutagens. The C-terminal region of ATM shares homology with catalytic domains of PI3 kinases. ATM becomes autophosphorylated and activated upon exposure to ionizing radiation, triggering kinase cascades that regulate cell cycle, apoptosis, and DNA damage repair. ATM is also linked to apoptosis regulation through interactions with Nbs1 and Chk2 in the E2F1 pathway.


For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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