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AB133473

Anti-Thiophosphate ester 抗体 [51-8]

Anti-Thiophosphate ester antibody [51-8]

5

(1 Review)

|

(23 Publications)

Anti-Thiophosphate ester antibody [51-8] (ab133473) is a rabbit monoclonal antibody detecting Thiophosphate ester in IP.

- Biophysical QC for unrivalled batch-batch consistency
- Over 10 publications
1 Images
Immunoprecipitation - Anti-Thiophosphate ester antibody [51-8] (AB133473)
  • IP

Unknown

Immunoprecipitation - Anti-Thiophosphate ester antibody [51-8] (AB133473)

ab133473, at 1 : 5000, immunoblotting immunoprecipitated samples pre-resolved by SDS-PAGE. Myelin basic protein (MBP) was thiophosphorylated by AS GSK3 beta (GSK3 beta also catalyzes an auto thiophosporylation reaction). Samples were treated with or without p-nitrobenzyl mesylate (PNBM) for 1 hour at room temperature. PNBM was removed by size exclusion and 1mg/ml of HeLa cell lysate was added to samples.

ab133473 was pre-incubated with protein G beads and was added to sample for an immunoprecipitation at 4°C overnight :

(1) Thiophosphorylated MBP
(2) PNBM treated thiophosphorylated MBP sample
(3) HeLa cell lysate
(4) HeLa cell lysate with PNBM treated thiophosphorylated MBP sample
(5) Control

All lanes:

Immunoprecipitation - Anti-Thiophosphate ester antibody [51-8] (ab133473)

false

関連する標識済み抗体及び組成の異なる製品 (2)

  • Carrier free

    Anti-Thiophosphate ester antibody [51-8] - BSA and Azide free

  • Unconjugated

    Anti-Thiophosphate ester antibody [51-8]

Key facts

宿主種

Rabbit

クローン性

Monoclonal

クローン番号

51-8

アイソタイプ

IgG

キャリアフリー

No

アプリケーション

IP

applications

免疫原

The exact immunogen used to generate this antibody is proprietary information.

特異性

Specific to thiophosphorylated amino acids.

Reactivity data

{ "title": "Reactivity Data", "filters": { "stats": ["", "Species", "Dilution Info", "Notes"], "tabs": { "all-applications": {"fullname" : "All Applications", "shortname": "All Applications"}, "IP" : {"fullname" : "Immunoprecipitation", "shortname":"IP"} }, "product-promise": { "all": "all", "testedAndGuaranteed": "tested", "guaranteed": "expected", "predicted": "predicted", "notRecommended": "not-recommended" } }, "values": { "Chemical": { "IP-species-checked": "testedAndGuaranteed", "IP-species-dilution-info": "1/5000", "IP-species-notes": "<p>Recommended: 0.5-1 ug of antibody per 1ug of kinase substrate</p>" } } }

製品の詳細

What is this antibody validated in?
Anti-Thiophosphate ester antibody [51-8] (ab133473) is a rabbit recombinant monoclonal antibody and is validated for use in Immunoprecipitation (IP). Trusted by the scientific community
Anti-Thiophosphate ester [51-8] (ab133473) was first used in a scientific publication in 2012 and has been cited over 10 times in peer-reviewed journals.

Other related products
We have a range of other formats of antibody clone [51-8] also available for your convenience: ab92570, ab133473, Carrier free - ab239919

Patented technology
Our RabMAb® technology is a patented hybridoma-based technology for making rabbit monoclonal antibodies. For details on our patents, please refer to RabMAb® patents.

What are the advantages of a recombinant monoclonal antibody?
This product is a recombinant monoclonal antibody, which offers several advantages including:

  • - High batch-to-batch consistency and reproducibility
  • - Improved sensitivity and specificity
  • - Long-term security of supply
  • - Animal-free batch production

For more information, read more on recombinant antibodies.

出荷温度及び保存条件

製品の状態
Liquid
精製方法
Affinity purification Protein A
バッファー組成
pH: 7.2 - 7.4 Preservative: 0.01% Sodium azide Constituents: PBS, 40% Glycerol (glycerin, glycerine), 0.05% BSA
出荷温度
Blue Ice
短期保存温度
+4°C
長期保存温度
-20°C
分注に関する情報
Upon delivery aliquot
保管に関する情報
Avoid freeze / thaw cycle

補足情報

This supplementary information is collated from multiple sources and compiled automatically.

The thiophosphate ester often referred to as ATP gamma S is a structural analog of adenosine triphosphate (ATP) where the oxygen is substituted with sulfur at the gamma position. This modification results in resistance to hydrolysis making it useful for studying ATP-dependent processes. Although the exact mass of thiophosphate ester varies depending on the specific derivative it is widely utilized in various cellular and organ systems due to its involvement as an ATP analog. The compound is not expressible in living organisms but it is valuable in experimental designs in laboratory settings.
Biological function summary

The role of the thiophosphate ester centers around its use as a tool for modulating enzymatic activity in cellular processes. It often functions as part of complex biochemical assays to investigate phosphorylation mechanisms. As a gamma phosphate analog it non-hydrolyzably activates kinases and other ATP-binding proteins providing insights into their dynamics and interactions within cellular structures. Researchers commonly use it in studies involving protein phosphorylation and signal transduction.

Pathways

The thiophosphate ester plays a significant role in ATP-dependent phosphorylation pathways particularly those involving protein kinases. Its analog can mimic ATP in signal transduction pathways which leads to sustained activation of pathways like MAPK/ERK important for cell proliferation and differentiation. It shares relations with various kinases such as PKA and PKC which regulate diverse cellular responses. This serves to illustrate how its presence aids in understanding the regulation and execution of these pathways by inhibiting or prolonging their activity.

Thiophosphate ester analogs help researchers examine aberrant kinase signaling linked to cancer and neurodegenerative diseases. By stabilizing interactions with proteins such as p53 in cancer pathways it is possible to evaluate the role of faulty phosphorylation in tumorigenesis. In the context of neurodegenerative disorders the ester assists in investigating abnormal signal transduction pathways that may lead to conditions like Alzheimer’s disease. By providing a platform for studying protein interactions it contributes to the understanding of how improper regulation can lead to disease development and progression.

製品プロトコール

For this product, it's our understanding that no specific protocols are required. You can visit:

文献 (23)

Recent publications for all applications. Explore the full list and refine your search

Nature communications 16:6666 PubMed40683865

2025

RIPK4-mediated MFN2 degradation drives osteogenesis through mitochondrial fragmentation and restricts myelopoiesis by blocking mitochondrial transfer.

Applications

Unspecified application

Species

Unspecified reactive species

Peng Ding,Xing Wang,Chuan Gao,Yuehan Wei,Gan Li,Wenlei Zhu,Ni Wang,Wan Fu,Qihang Fang,Meng Yao,Yigang Huang,Chenyi Jiang,Youshui Gao,Jing Zhang,Junjie Gao,Qing Zhong,Changqing Zhang

Genetics 228: PubMed38979911

2024

An acidic loop in the forkhead-associated domain of the yeast meiosis-specific kinase Mek1 interacts with a specific motif in a subset of Mek1 substrates.

Applications

Unspecified application

Species

Unspecified reactive species

Qixuan Weng,Lihong Wan,Geburah C Straker,Tom D Deegan,Bernard P Duncker,Aaron M Neiman,Ed Luk,Nancy M Hollingsworth

The EMBO journal 42:e112814 PubMed37635626

2023

TOR-mediated Ypt1 phosphorylation regulates autophagy initiation complex assembly.

Applications

Unspecified application

Species

Unspecified reactive species

Weijing Yao,Yuting Chen,Yingcong Chen,Pengwei Zhao,Jing Liu,Yi Zhang,Qiang Jiang,Choufei Wu,Yu Xie,Siyu Fan,Miao Ye,Yigang Wang,Yuyao Feng,Xue Bai,Mingzhu Fan,Shan Feng,Juan Wang,Yixian Cui,Hongguang Xia,Cheng Ma,Zhiping Xie,Liqin Zhang,Qiming Sun,Wei Liu,Cong Yi

Journal of lipid research 63:100279 PubMed36100091

2022

ER Stress-Induced Sphingosine-1-Phosphate Lyase Phosphorylation Potentiates the Mitochondrial Unfolded Protein Response.

Applications

Unspecified application

Species

Unspecified reactive species

Asli D Yildirim,Mevlut Citir,Asli E Dogan,Zehra Veli,Zehra Yildirim,Ozlem Tufanli,Alexis Traynor-Kaplan,Carsten Schultz,Ebru Erbay

Autophagy 19:180-188 PubMed35427192

2022

Atg1-mediated Atg11 phosphorylation is required for selective autophagy by regulating its association with receptor proteins.

Applications

Unspecified application

Species

Unspecified reactive species

Weijing Yao,Yixing Li,Yingcong Chen,Yuting Chen,Yu Xie,Miaojuan Ye,Ying Zhang,Xiangjun Chen,Xiaoyong Wu,Yuyao Feng,Zhi Hong,Yigang Wang,Wei Liu,Cong Yi

EMBO molecular medicine 14:e15344 PubMed35191199

2022

Intercepting IRE1 kinase-FMRP signaling prevents atherosclerosis progression.

Applications

Unspecified application

Species

Unspecified reactive species

Zehra Yildirim,Sabyasachi Baboo,Syed M Hamid,Asli E Dogan,Ozlem Tufanli,Sabrina Robichaud,Christina Emerton,Jolene K Diedrich,Hasan Vatandaslar,Fotis Nikolos,Yanghong Gu,Takao Iwawaki,Elizabeth Tarling,Mireille Ouimet,David L Nelson,John R Yates,Peter Walter,Ebru Erbay

Journal of cell science 134: PubMed34730182

2021

CK1α protects WAVE from degradation to regulate cell shape and motility in the immune response.

Applications

Unspecified application

Species

Unspecified reactive species

Alexander Hirschhäuser,Marianne van Cann,Sven Bogdan

Nature communications 12:6129 PubMed34675214

2021

Regulation of plant phototropic growth by NPH3/RPT2-like substrate phosphorylation and 14-3-3 binding.

Applications

Unspecified application

Species

Unspecified reactive species

Stuart Sullivan,Thomas Waksman,Dimitra Paliogianni,Louise Henderson,Melanie Lütkemeyer,Noriyuki Suetsugu,John M Christie

Nature communications 12:5386 PubMed34508104

2021

Inhibition of CK1ε potentiates the therapeutic efficacy of CDK4/6 inhibitor in breast cancer.

Applications

Unspecified application

Species

Unspecified reactive species

Fabin Dang,Li Nie,Jin Zhou,Kouhei Shimizu,Chen Chu,Zhong Wu,Anne Fassl,Shizhong Ke,Yuangao Wang,Jinfang Zhang,Tao Zhang,Zhenbo Tu,Hiroyuki Inuzuka,Piotr Sicinski,Adam J Bass,Wenyi Wei

eLife 10: PubMed34310279

2021

Autoregulatory control of microtubule binding in doublecortin-like kinase 1.

Applications

Unspecified application

Species

Unspecified reactive species

Regina L Agulto,Melissa M Rogers,Tracy C Tan,Amrita Ramkumar,Ashlyn M Downing,Hannah Bodin,Julia Castro,Dan W Nowakowski,Kassandra M Ori-McKenney
View all publications

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