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AB126468

Anti-Amyloid Fibril 抗体

Anti-Amyloid Fibril antibody

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(3 Publications)

Rabbit Polyclonal Amyloid-beta precursor protein antibody. Suitable for IHC, IP, Dot, ICC/IF, WB, ELISA and reacts with Human samples. Cited in 3 publications. Immunogen corresponding to Synthetic Peptide within Human APP.

別名を表示する

A4, AD1, APP, Amyloid-beta precursor protein, ABPP, APPI, Alzheimer disease amyloid A4 protein homolog, Alzheimer disease amyloid protein, Amyloid precursor protein, Amyloid-beta (A4) precursor protein, Amyloid-beta A4 protein, Cerebral vascular amyloid peptide, PreA4, Protease nexin-II, CVAP, PN-II

1 Images
Dot Blot - Anti-Amyloid Fibril antibody (AB126468)
  • Dot

Supplier Data

Dot Blot - Anti-Amyloid Fibril antibody (AB126468)

Dot blot analysis of Human cell lysates using ab126468 at 1/500-1/5000 dilution.

false

Key facts

宿主種

Rabbit

クローン性

Polyclonal

アイソタイプ

IgG

キャリアフリー

No

交差種

Human

アプリケーション

ICC/IF, WB, IHC, ELISA, IP, Dot

applications

免疫原

Synthetic Peptide within Human APP. The exact immunogen used to generate this antibody is proprietary information.

P05067

特異性

Recognizes generic epitopes common to many amyloid fibrils and fibrillar oligomers, but not prefibrillar oligomers or natively folded proteins. Expected to detect in Mouse and Rat based on species homology.

Reactivity data

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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
Preservative: 0.09% Sodium azide Constituents: PBS, 50% Glycerol (glycerin, glycerine)
出荷温度
Blue Ice
短期保存温度
+4°C
長期保存温度
-20°C

補足情報

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

Amyloid fibrils alternatively named fibrillar amyloid are insoluble fibrous protein aggregates resulting from the abnormal folding of proteins. They compose primarily of beta-sheet structures which promote stability and rigidity. Amyloid fibrils are frequently associated with proteins like Aβ and tau known for their high molecular mass. Researchers observe these structures in various tissues where they exhibit significant resilience to both chemical and enzymatic degradation.
Biological function summary

The misfolding and accumulation of proteins into amyloid fibrils prove disruptive within cells. These aggregates often form as part of complex protein assemblies and interfere with normal cellular functions. This disruption further leads to cellular dysfunction and death. While commonly observed in neuronal cells where they are linked to neurodegenerative conditions amyloid fibrils can also appear in other tissues and organs suggesting multi-systemic implications.

Pathways

Scientists recognize amyloid fibrils for their involvement in the amyloidogenic pathways. These pathways often lead to the generation and accumulation of misfolded proteins. The amyloid precursor protein (APP) and presenilins play important roles in pathway processes associated with amyloid fibrils. In addition the fibrillar structures can influence calcium dysregulation and oxidative stress contributing to altered cellular homeostasis.

Amyloid fibrils are strongly associated with Alzheimer's disease and systemic amyloidosis. Within Alzheimer's disease amyloid fibrils formed by Aβ peptides contribute to plaque formation a hallmark of the condition. Furthermore interactions with tau protein exacerbate neurofibrillary tangles compounding neurodegenerative effects. In systemic amyloidosis different precursor proteins undergo fibrillogenesis resulting in widespread organ dysfunction and highlighting the pathogenic potential of amyloid fibrils beyond neurological tissues.

製品プロトコール

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ターゲットの情報

Functions as a cell surface receptor and performs physiological functions on the surface of neurons relevant to neurite growth, neuronal adhesion and axonogenesis. Interaction between APP molecules on neighboring cells promotes synaptogenesis (PubMed : 25122912). Involved in cell mobility and transcription regulation through protein-protein interactions. Can promote transcription activation through binding to APBB1-KAT5 and inhibits Notch signaling through interaction with Numb. Couples to apoptosis-inducing pathways such as those mediated by G(o) and JIP. Inhibits G(o) alpha ATPase activity (By similarity). Acts as a kinesin I membrane receptor, mediating the axonal transport of beta-secretase and presenilin 1 (By similarity). By acting as a kinesin I membrane receptor, plays a role in axonal anterograde transport of cargo towards synapses in axons (PubMed : 17062754, PubMed : 23011729). Involved in copper homeostasis/oxidative stress through copper ion reduction. In vitro, copper-metallated APP induces neuronal death directly or is potentiated through Cu(2+)-mediated low-density lipoprotein oxidation. Can regulate neurite outgrowth through binding to components of the extracellular matrix such as heparin and collagen I and IV. The splice isoforms that contain the BPTI domain possess protease inhibitor activity. Induces a AGER-dependent pathway that involves activation of p38 MAPK, resulting in internalization of amyloid-beta peptide and leading to mitochondrial dysfunction in cultured cortical neurons. Provides Cu(2+) ions for GPC1 which are required for release of nitric oxide (NO) and subsequent degradation of the heparan sulfate chains on GPC1.. Amyloid-beta peptides are lipophilic metal chelators with metal-reducing activity. Bind transient metals such as copper, zinc and iron. In vitro, can reduce Cu(2+) and Fe(3+) to Cu(+) and Fe(2+), respectively. Amyloid-beta peptides bind to lipoproteins and apolipoproteins E and J in the CSF and to HDL particles in plasma, inhibiting metal-catalyzed oxidation of lipoproteins. Promotes both tau aggregation and TPK II-mediated phosphorylation. Interaction with overexpressed HADH2 leads to oxidative stress and neurotoxicity. Also binds GPC1 in lipid rafts.. Amyloid-beta protein 42. More effective reductant than amyloid-beta protein 40. May activate mononuclear phagocytes in the brain and elicit inflammatory responses.. Appicans elicit adhesion of neural cells to the extracellular matrix and may regulate neurite outgrowth in the brain.. The gamma-CTF peptides as well as the caspase-cleaved peptides, including C31, are potent enhancers of neuronal apoptosis.
See full target information APP

文献 (3)

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

Nature communications 13:5399 PubMed36104342

2022

Mild dyslipidemia accelerates tumorigenesis through expansion of Ly6C monocytes and differentiation to pro-angiogenic myeloid cells.

Applications

Unspecified application

Species

Unspecified reactive species

Thi Tran,Jean-Remi Lavillegrand,Cedric Lereverend,Bruno Esposito,Lucille Cartier,Melanie Montabord,Jaouen Tran-Rajau,Marc Diedisheim,Nadège Gruel,Khadija Ouguerram,Lea Paolini,Olivia Lenoir,Emmanuel Pinteaux,Eva Brabencova,Corinne Tanchot,Pauline Urquia,Jacqueline Lehmann-Che,Richard Le Naour,Yacine Merrouche,Christian Stockmann,Ziad Mallat,Alain Tedgui,Hafid Ait-Oufella,Eric Tartour,Stephane Potteaux

eLife 11: PubMed35257659

2022

Co-aggregation and secondary nucleation in the life cycle of human prolactin/galanin functional amyloids.

Applications

Unspecified application

Species

Unspecified reactive species

Debdeep Chatterjee,Reeba S Jacob,Soumik Ray,Ambuja Navalkar,Namrata Singh,Shinjinee Sengupta,Laxmikant Gadhe,Pradeep Kadu,Debalina Datta,Ajoy Paul,Sakunthala Arunima,Surabhi Mehra,Chinmai Pindi,Santosh Kumar,Praful Singru,Sanjib Senapati,Samir K Maji

The EMBO journal 38:e102345 PubMed31701556

2019

Tau deletion reduces plaque-associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease.

Applications

Unspecified application

Species

Unspecified reactive species

Finn Peters,Hazal Salihoglu,Katrin Pratsch,Etienne Herzog,Martina Pigoni,Carmelo Sgobio,Stefan F Lichtenthaler,Ulf Neumann,Jochen Herms
View all publications

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