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Merck
모든 사진(1)

주요 문서

MAB4417

Sigma-Aldrich

Anti-Achaete Scute homolog 2 Antibody, clone 8F1

clone 8F1, from mouse

동의어(들):

achaete-scute complex (Drosophila) homolog-like 2, achaete-scute complex homolog 2 (Drosophila), achaete-scute complex homolog-like 2, achaete-scute complex-like 2, achaete-scute complex-like 2 (Drosophila), mammalian achaete/scute homologue 2

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About This Item

UNSPSC 코드:
12352203
eCl@ss:
32160702
NACRES:
NA.41

생물학적 소스

mouse

Quality Level

항체 형태

purified immunoglobulin

항체 생산 유형

primary antibodies

클론

8F1, monoclonal

종 반응성

human

종 반응성(상동성에 의해 예측)

mouse (based on 100% sequence homology)

기술

immunohistochemistry: suitable
western blot: suitable

동형

IgG1κ

NCBI 수납 번호

UniProt 수납 번호

배송 상태

wet ice

타겟 번역 후 변형

unmodified

유전자 정보

human ... ASCL2(430)

일반 설명

Achaete Scute homolog 2 (also known as mammalian aschaete-scute homolog 2 or Mash2) is a nuclear protein expressed specifically in the extravillous trophoblasts of developing placenta. Placental development involves control by the basic helix-loop-helix transcription factor Achaete Scute homolog 2, which may regulate HIF (hypoxia) in the formation of spongiotrophoblasts. Targeted mutagenesis of Achaete Scute homolog 2 yielded loss of function results in embryonic lethality at midgestation due to placental failure associated with a lack of spongiotrophoblasts and reduced labyrinthine trophoblast layers. In addition to healthy placental development, Achaete Scute proteins may also be involved in the determination of neuronal precursors in the central and peripheral nervous systems. Achaete Scute homolog 2 has also been implicated as a controller of intestinal stem cell fate and is essential for the maintenance of adult intestinal stem cells (Tanaka, M., et al., (1997) Dev Biol. 190(10):55-65).

특이성

This antibody recognizes Achaete Scute homolog 2.

면역원

His-tagged recombinant protein corresponding to mouse Achaete Scute homolog 2.

애플리케이션

Anti-Achaete Scute homolog 2 Antibody, clone 8F1 is an antibody against Achaete Scute homolog 2 for use in WB, IH.
Immunohistochemistry: A previous lot of this antibody was used in immunocytochemistry by an independent laboratory (Van der Flier, et al., 2009).

품질

Evaluated by Western Blot in human placenta tissue lysate.

Western Blot Analysis: 1 µg/mL of this antibody detected Achaete Scute homolog 2 on 10 µg of human placenta tissue lysate.

표적 설명

~ 20 kDa

물리적 형태

Format: Purified

기타 정보

Concentration: Please refer to the Certificate of Analysis for the lot-specific concentration.

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Storage Class Code

12 - Non Combustible Liquids

WGK

WGK 1

Flash Point (°F)

Not applicable

Flash Point (°C)

Not applicable


시험 성적서(COA)

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문서 라이브러리 방문

Qingyu Wang et al.
Stem cell reports, 15(2), 374-388 (2020-07-11)
Intestinal regeneration is crucial for functional restoration after injury, and nutritional molecules can play an important role in this process. Here, we found that arachidonic acid (AA) serves as a direct proliferation promoter of intestinal epithelial cells that facilitates small
Jie Wang et al.
Oncotarget, 9(34), 23320-23333 (2018-05-29)
Achaete-scute-like 2 (ASCL2) is a transcription factor containing a basic helix-loop-helix (bHLH) domain and is a downstream target of Wnt signaling in intestinal stem cells. Bufalin is the primary active ingredient in Chan Su, a traditional Chinese medicine obtained from
Rosemary Oh-McGinnis et al.
Developmental biology, 351(2), 277-286 (2011-01-18)
Several imprinted genes have been implicated in the regulation of placental function and embryonic growth. On distal mouse chromosome 7, two clusters of imprinted genes, each regulated by its own imprinting center (IC), are separated by a poorly characterized region
Justine Creff et al.
Cell reports, 42(6), 112659-112659 (2023-06-16)
p57Kip2 is a cyclin/CDK inhibitor and a negative regulator of cell proliferation. Here, we report that p57 regulates intestinal stem cell (ISC) fate and proliferation in a CDK-independent manner during intestinal development. In the absence of p57, intestinal crypts exhibit
Kevin C Allan et al.
Cell stem cell, 28(2), 257-272 (2020-10-23)
Mammalian cells respond to insufficient oxygen through transcriptional regulators called hypoxia-inducible factors (HIFs). Although transiently protective, prolonged HIF activity drives distinct pathological responses in different tissues. Using a model of chronic HIF1a accumulation in pluripotent-stem-cell-derived oligodendrocyte progenitors (OPCs), we demonstrate

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