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AB5207

Anti-Piwi 抗体

Anti-Piwi antibody

0

(1 Review)

|

(8 Publications)

Rabbit Polyclonal PIWI antibody. Suitable for WB and reacts with Drosophila melanogaster samples. Cited in 8 publications.

別名を表示する

CG6122, piwi, Protein piwi, Protein P-element induced wimpy testis

3 Images
Western blot - Anti-Piwi antibody (AB5207)
  • WB

Collaborator

Western blot - Anti-Piwi antibody (AB5207)

Drosophila embryo lysate, 8% TRIS SDS-PAGE.
The arrow indicates Piwi at a predicted MW of 90 kDa.
Pre-immune sera was used as a control and showed no equivalent band (data not shown).

Drosophila embryo lysate, 8% TRIS SDS-PAGE. The arrow indicates Piwi at a predicted MW of 90 kDa. Pre-immune sera was used as a control and showed no equivalent band (data not shown). Ahmet Denli

All lanes:

Western blot - Anti-Piwi antibody (ab5207)

Predicted band size: 97 kDa

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This image is courtesy of Ahmet Denli

Western blot - Anti-Piwi antibody (AB5207)
  • WB

Project304****

Western blot - Anti-Piwi antibody (AB5207)

All lanes:

Western blot - Anti-Piwi antibody (ab5207) at 1 µg/mL

All lanes:

Drosophila embryo nuclear extract (from melanogaster embryos 0-12Hr) at 20 µg

Secondary

All lanes:

IRDye 680 Conjugated Goat Anti-Rabbit IgG (H+L) at 1/3000 dilution

Predicted band size: 97 kDa

Observed band size: 53 kDa,90 kDa

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Western blot - Anti-Piwi antibody (AB5207)
  • WB

CiteAb

Western blot - Anti-Piwi antibody (AB5207)

Piwi western blot using anti-Piwi antibody ab5207. Publication image and figure legend from Patil, V. S., Anand, A., et al., 2014, BMC Biol, PubMed 25287931.

ab5207 was used in this publication in western blot. This may not be the same as the application(s) guaranteed by Abcam. For a full list of applications guaranteed by Abcam for ab5207 please see the product overview.

Piwi fails to localize to the nucleus in germline cells of thetej-tapdouble mutant. (A) Ovaries stained for Piwi (green) and DAPI (blue). Piwi localized to the nucleus in the somatic cells but failed to localize to the nucleus of germline cells of the tej48–5-tap125 double mutants. (B) Western blot with anti-Piwi antibody showing no significant difference in Piwi expression levels in tej48–5-, tap125- and tej48–5-tap125-mutant ovaries in comparison to their respective heterozygous controls. The same blot was re-probed with anti-α-Tubulin to examine loading. (C) Expression of Myc-Piwi in tej48–5-tap125 ovaries does not rescue nuclear localization of Piwi in germline cells. Immunostaining shows cytoplasmic Myc-Piwi in germline cells of tej48–5-tap125 double-mutant ovaries. Scale bar = 5 μm.

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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

Drosophila melanogaster

アプリケーション

WB

applications

免疫原

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

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 Immunogen
バッファー組成
pH: 7.4 Preservative: 0.02% Sodium azide Constituents: 98.98% PBS, 1% BSA
出荷温度
Blue Ice
短期保存期間
1-2 weeks
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.

Piwi also known as P-element Induced WImpy testis belongs to the Argonaute family of proteins and has a molecular mass around 100 kDa. Piwi is mainly expressed in the germline cells and plays an important role in maintaining stem cell populations. The primary function of Piwi involves the interaction with piRNAs (Piwi-interacting RNAs) which are small non-coding RNAs. This interaction helps in the suppression of transposable element activity ensuring genome stability in the germ cells.
Biological function summary

Piwi interacts with piRNAs to form a silencing complex that regulates gene expression. This protein plays an important role in germ cell development and differentiation. By silencing transposon elements the Piwi-piRNA complex prevents potentially harmful genomic instability. Beyond germ cells Piwi has been seen to play roles in some somatic tissues indicating its broader biological significance.

Pathways

Piwi engages in the RNA interference (RNAi) pathway where it works together with other Argonaute proteins to mediate gene silencing. In the piRNA pathway Piwi collaborates with related proteins like Ago3 and Aubergine to ensure proper gene regulation during gametogenesis. These interactions are essential for the maintenance of genetic integrity by repressing the activity of transposable elements.

Piwi has associations with germ cell tumors and some forms of cancer. Dysregulation of the Piwi-piRNA pathway can contribute to abnormal cell growth implicating Piwi in oncogenic processes. Piwi-related proteins connect to these disease states as seen in interactions with members of the Argonaute family which have broader roles in gene regulation and cancer biology. Understanding Piwi's role offers potential therapeutic targets for these conditions.

製品プロトコール

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ターゲットの情報

Acts via the piwi-interacting RNA (piRNA) metabolic process, which mediates the repression of transposable elements during meiosis by forming complexes composed of piRNAs and Piwi proteins and governs the methylation and subsequent repression of transposons (PubMed : 15817569, PubMed : 17346786, PubMed : 26808625). Directly binds piRNAs, a class of 24 to 30 nucleotide RNAs that are generated by a Dicer-independent mechanism and are primarily derived from transposons and other repeated sequence elements (PubMed : 16882972). In ovarian somatic cells, mediates silencing of transposable elements at the transcriptional level in a mael-dependent manner (PubMed : 23159368, PubMed : 28472469). Involved in silencing of long terminal repeat (LTR) retrotransposons in male germline (PubMed : 15817569). In testis, regulates spermatogenesis together with Tudor-SN (PubMed : 26808625). In germ cells, mediates silencing at both transcriptional and post-transcriptional levels and is involved in the maintenance of populations of primary and secondary piRNAs. Piwi-mediated transcriptional silencing is accompanied by the formation of His3 trimethylated on 'Lys-10' (H3K9me3) associated euchromatin and heterochromatin (PubMed : 23392610, PubMed : 23434410, PubMed : 24906153). In ovary, associates predominantly with antisense piRNAs that contain uridine at their 5' end. Association with sense piRNAs is also observed but to a lesser extent. Mediates a somatic signaling mechanism required for the maintenance of germline stem cells to produce and maintain a daughter germline stem cell (PubMed : 10631171, PubMed : 16949822, PubMed : 9199372, PubMed : 9851978). It is not essential for the further differentiation of the committed daughter cell (PubMed : 9851978). Acts cell autonomously to promote germline stem cell division (PubMed : 10631171, PubMed : 9851978). Its role in stem cell maintenance does not seem to require nuclear localization. Required maternally for the posterior localization of osk and vas and for pole cell formation during oogenesis and early embryogenesis (PubMed : 16949822). Together with Hop and Hsp83, mediates canalization, also known as developmental robustness, likely via epigenetic silencing of existing genetic variants and suppression of transposon-induced new genetic variation (PubMed : 21186352). Shows RNA cleavage activity, although is not required for any of its known functions (PubMed : 16882972, PubMed : 23297219, PubMed : 9199372). In the ovaries, forms a complex with nxf2, Panx and Nxt1 which acts as effectors of cotranscriptional transposon silencing (PubMed : 31368590, PubMed : 31384064).
See full target information piwi

文献 (8)

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

EvoDevo 10:31 PubMed31788180

2019

Putative stem cells in the hemolymph and in the intestinal submucosa of the solitary ascidian .

Applications

Unspecified application

Species

Unspecified reactive species

Juan Jiménez-Merino,Isadora Santos de Abreu,Laurel S Hiebert,Silvana Allodi,Stefano Tiozzo,Cintia M De Barros,Federico D Brown

Regeneration (Oxford, England) 2:1-18 PubMed25893097

2015

Distal Regeneration Involves the Age Dependent Activity of Branchial Sac Stem Cells in the Ascidian .

Applications

Unspecified application

Species

Unspecified reactive species

William R Jeffery

BMC biology 12:61 PubMed25287931

2014

The Tudor domain protein Tapas, a homolog of the vertebrate Tdrd7, functions in the piRNA pathway to regulate retrotransposons in germline of Drosophila melanogaster.

Applications

WB

Species

Drosophila melanogaster

Veena S Patil,Amit Anand,Alisha Chakrabarti,Toshie Kai

Nucleic acids research 42:2512-24 PubMed24288375

2013

Spatio-temporal requirements for transposable element piRNA-mediated silencing during Drosophila oogenesis.

Applications

IHC-P

Species

Drosophila melanogaster

Jérémy Dufourt,Cynthia Dennis,Antoine Boivin,Nathalie Gueguen,Emmanuelle Théron,Coline Goriaux,Pierre Pouchin,Stéphane Ronsseray,Emilie Brasset,Chantal Vaury

Proceedings of the National Academy of Sciences of 108:18760-5 PubMed22065765

2011

Separation of stem cell maintenance and transposon silencing functions of Piwi protein.

Applications

Unspecified application

Species

Unspecified reactive species

Mikhail S Klenov,Olesya A Sokolova,Evgeny Y Yakushev,Anastasia D Stolyarenko,Elena A Mikhaleva,Sergey A Lavrov,Vladimir A Gvozdev

Genes & development 25:1686-701 PubMed21852534

2011

RNAi-independent role for Argonaute2 in CTCF/CP190 chromatin insulator function.

Applications

WB

Species

Drosophila melanogaster

Nellie Moshkovich,Parul Nisha,Patrick J Boyle,Brandi A Thompson,Ryan K Dale,Elissa P Lei

Journal of experimental zoology. Part B, Molecular and developmental evolution 312:885-900 PubMed19588490

2009

Whole body regeneration in a colonial ascidian, Botrylloides violaceus.

Applications

Unspecified application

Species

Unspecified reactive species

Federico D Brown,Elena L Keeling,Anna D Le,Billie J Swalla

Developmental biology 331:113-28 PubMed19406116

2009

Vasa and the germ line lineage in a colonial urochordate.

Applications

WB

Species

Unspecified reactive species

Amalia Rosner,Elizabeth Moiseeva,Yuval Rinkevich,Ziva Lapidot,Baruch Rinkevich
View all publications

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