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Merck
모든 사진(1)

Key Documents

EHU094941

Sigma-Aldrich

MISSION® esiRNA

targeting human HNRNPD (1)

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About This Item

UNSPSC 코드:
41105324
NACRES:
NA.51

설명

Powered by Eupheria Biotech

제품 라인

MISSION®

형태

lyophilized powder

esiRNA cDNA 표적 서열

CTTGCCGAAATTGAGGACATGATTAAAATTGCAGTGAAGTTTGAAATGTTTTTAGCAAAATCTAATTTTTGCCATAATGTGTCCTCCCTGTCCAAATTGGGAATGACTTAATGTCAATTTGTTTGTTGGTTGTTTTAATAATACTTCCTTATGTAGCCATTAAGATTTATATGAATATTTTCCCAAATGCCCAGTTTTTGCTTAATATGTATTGTGCTTTTTAGAACAAATCTGGATAAATGTGCAAAAGTACCCCTTTGCACAGATAGTTAATGTTTTATGCTTCCATTAAATAAAAAGGACTTAAAATCTGTTAATTATAATAGAAATGCGGCTAGTTCAGAGAGA

Ensembl | 인체 수납 번호

NCBI 수납 번호

배송 상태

ambient

저장 온도

−20°C

유전자 정보

일반 설명

MISSION esiRNA are endoribonuclease prepared siRNA. They are a heterogeneous mixture of siRNA that all target the same mRNA sequence. These multiple silencing triggers lead to highly-specific and effective gene silencing.

For additional details as well as to view all available esiRNA options, please visit SigmaAldrich.com/esiRNA.

법적 정보

MISSION is a registered trademark of Merck KGaA, Darmstadt, Germany

Storage Class Code

10 - Combustible liquids

Flash Point (°F)

Not applicable

Flash Point (°C)

Not applicable


시험 성적서(COA)

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문서 라이브러리 방문

Shuhong Sun et al.
The Journal of biological chemistry, 291(50), 25823-25836 (2016-10-28)
Autotaxin (ATX) is a key enzyme that converts lysophosphatidylcholine (LPC) into lysophosphatidic acid (LPA), a lysophospholipid mediator that regulates cellular activities through its specific G protein-coupled receptors. The ATX-LPA axis plays an important role in various physiological and pathological processes
Luigi Alfano et al.
Nucleic acids research, 47(8), 4068-4085 (2019-02-26)
DNA double strand break (DSB) repair through homologous recombination (HR) is crucial to maintain genome stability. DSB resection generates a single strand DNA intermediate, which is crucial for the HR process. We used a synthetic DNA structure, mimicking a resection
Huiwen Song et al.
Autophagy, 15(8), 1419-1437 (2019-03-15)
N6-methyladenosine (m6A) mRNA modifications play critical roles in various biological processes. However, no study addresses the role of m6A in macroautophagy/autophagy. Here, we show that m6A modifications are increased in H/R-treated cardiomyocytes and ischemia/reperfusion (I/R)-treated mice heart. We found that

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