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Merck
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重要文件

EMU005041

Sigma-Aldrich

MISSION® esiRNA

targeting mouse Fbxw7

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About This Item

分類程式碼代碼:
41105324
NACRES:
NA.51

描述

Powered by Eupheria Biotech

品質等級

產品線

MISSION®

形狀

lyophilized powder

esiRNA cDNA 標靶序列

TGTGGAATGCTGAAACTGGAGAGTGTATACATACTTTATATGGGCACACTTCTACTGTACGGTGTATGCATCTCCATGAAAAAAGGGTTGTAAGCGGTTCTCGAGATGCCACTCTCAGGGTTTGGGATATTGAGACCGGCCAGTGTTTACACGTCCTGATGGGTCACGTAGCAGCGGTCCGCTGCGTTCAGTATGATGGCAGGAGGGTTGTTAGTGGAGCTTATGATTTTATGGTGAAGGTGTGGGATCCAGAGACTGAGACCTGTCTACACACGTTACAGGGACACACTAATAGAGTCTATTCATTACAGTTTGATGGCATCCATGTGGTGAGTGGATCTCTTGATACATCAATCCGAGTCTGGGATGTGGAGACAGGGAATTGTATTCACACGCTAACAGGACACC

Ensembl | 小鼠類登錄號

NCBI登錄號

運輸包裝

ambient

儲存溫度

−20°C

基因資訊

一般說明

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.

法律資訊

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

儲存類別代碼

10 - Combustible liquids

閃點(°F)

Not applicable

閃點(°C)

Not applicable


分析證明 (COA)

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Kangsheng Tu et al.
Molecular cancer, 13, 110-110 (2014-06-03)
The E3 ubiquitin ligase Fbxw7 functions as a general tumor suppressor by targeting several well-known oncoproteins for ubiquitination and proteasomal degradation. However, the clinical significance of Fbxw7 and the mechanisms involved in the anti-cancer effect of Fbxw7 in HCC are
Xiaoying Zhou et al.
Journal of experimental & clinical cancer research : CR, 34, 28-28 (2015-04-19)
Increasing evidence showed that miRNAs serve as modulators of human cancer, either as oncogene or tumor suppressors. Cisplatin resistance is the most common cause of chemotherapy failure in gastric cancer (GC). However, the roles of miRNAs in cisplatin resistance of
Junghui Koo et al.
The Journal of biological chemistry, 290(22), 14120-14129 (2015-04-22)
Rictor, an essential component of mTOR complex 2 (mTORC2), plays a pivotal role in regulating mTOR signaling and other biological functions. Posttranslational regulation of rictor (e.g. via degradation) and its underlying mechanism are largely undefined and thus are the focus

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