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    SFN stratifin [ Homo sapiens (human) ]

    Gene ID: 2810, updated on 17-Jun-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Stratifin promotes the malignant progression of HCC via binding and hyperactivating AKT signaling.

    Stratifin promotes the malignant progression of HCC via binding and hyperactivating AKT signaling.
    Li R, Yan X, Zhong W, Zheng J, Li X, Liang J, Hu Z, Liu H, Chen G, Yang Y, Zhang J, Qu E, Liu W.

    06/8/2024
    Stratifin as a novel diagnostic biomarker in serum for diffuse alveolar damage.

    Stratifin as a novel diagnostic biomarker in serum for diffuse alveolar damage.
    Arakawa N, Ushiki A, Abe M, Matsuyama S, Saito Y, Kashiwada T, Horimasu Y, Gemma A, Tatsumi K, Hattori N, Tsushima K, Miyashita K, Saito K, Nakamura R, Toyoda T, Ogawa K, Sato M, Takamatsu K, Mori K, Nishiya T, Izumi T, Ohno Y, Saito Y, Hanaoka M., Free PMC Article

    10/8/2022
    Long non-coding RNA titin-antisense RNA1 contributes to growth and metastasis of cholangiocarcinoma by suppressing microRNA-513a-5p to upregulate stratifin.

    Long non-coding RNA titin-antisense RNA1 contributes to growth and metastasis of cholangiocarcinoma by suppressing microRNA-513a-5p to upregulate stratifin.
    Liu Y, Sun J, Qi P, Liu Y., Free PMC Article

    02/19/2022
    Significance of stratifin in early progression of lung adenocarcinoma and its potential therapeutic relevance.

    Significance of stratifin in early progression of lung adenocarcinoma and its potential therapeutic relevance.
    Shiba-Ishii A.

    02/12/2022
    14-3-3 Sigma Protein Contributes to Hepatocyte Growth Factor-mediated Cell Proliferation and Invasion via Matrix Metalloproteinase-1 Regulation in Human Gastric Cancer.

    14-3-3 Sigma Protein Contributes to Hepatocyte Growth Factor-mediated Cell Proliferation and Invasion via Matrix Metalloproteinase-1 Regulation in Human Gastric Cancer.
    Jung JY, Koh SA, Lee KH, Kim JR.

    01/15/2022
    Stratifin in ocular surface squamous neoplasia and its association with p53.

    Stratifin in ocular surface squamous neoplasia and its association with p53.
    Chauhan S, Sen S, Chauhan SS, Pushker N, Tandon R, Kashyap S, Vanathi M, Bajaj MS.

    01/15/2022
    14-3-3sigma Functions as an Intestinal Tumor Suppressor.

    14-3-3σ Functions as an Intestinal Tumor Suppressor.
    Winter M, Rokavec M, Hermeking H.

    12/18/2021
    Phosphorylated full-length Tau interacts with 14-3-3 proteins via two short phosphorylated sequences, each occupying a binding groove of 14-3-3 dimer.

    Phosphorylated full-length Tau interacts with 14-3-3 proteins via two short phosphorylated sequences, each occupying a binding groove of 14-3-3 dimer.
    Neves JF, Petrvalská O, Bosica F, Cantrelle FX, Merzougui H, O'Mahony G, Hanoulle X, Obšil T, Landrieu I.

    07/31/2021
    Construction and validation of a bronchoalveolar lavage cell-associated gene signature for prognosis prediction in idiopathic pulmonary fibrosis.

    Construction and validation of a bronchoalveolar lavage cell-associated gene signature for prognosis prediction in idiopathic pulmonary fibrosis.
    Xia Y, Lei C, Yang D, Luo H.

    06/26/2021
    Role of stratifin (14-3-3 sigma) in adenocarcinoma of gallbladder: A novel prognostic biomarker.

    Role of stratifin (14-3-3 sigma) in adenocarcinoma of gallbladder: A novel prognostic biomarker.
    Sirivatanauksorn V, Dumronggittigule W, Dulnee B, Srisawat C, Sirivatanauksorn Y, Pongpaibul A, Masaratana P, Somboonyosdech C, Sripinitchai S, Kositamongkol P, Mahawithitwong P, Tovikkai C, Sangserestid P, Limsrichamrern S.

    10/31/2020
    Based on above results, overexpression of SFN was correlated with the prognosis in ovarian cancer. The present study might be useful for better understanding the clinical significance of SFN mRNA.

    Expression profile and prognostic value of SFN in human ovarian cancer.
    Hu Y, Zeng Q, Li C, Xie Y., Free PMC Article

    07/11/2020
    H19 and miR- 675-5p are upregulated in Nasopharyngeal Cancer (NPC), which is related to the development of NPC. The over-expression of miR- 675-5p inhibits the expression of SFN (14-3-3sigma) protein.

    H19/miR-675-5p Targeting SFN Enhances the Invasion and Metastasis of Nasalpharyngeal Cancer Cells.
    Zhang T, Lei F, Jiang T, Xie L, Huang P, Li P, Huang Y, Tang X, Gong J, Lin Y, Cheng A, Huang W.

    07/11/2020
    Quantitative methylation results indicated that the level of methylation was significantly higher (hypermethylated) for FLT3 and EPB41L3 and significantly lower (hypomethylated) for SFN in tumour tissues as compared to the adjacent paired normal tissue.

    Promoter-associated DNA methylation & expression profiling of genes (FLT 3, EPB41L3 & SFN) in patients with oral squamous cell carcinoma in the Khasi & Jaintia population of Meghalaya, India.
    Khongsti S, Shunyu BN, Ghosh S., Free PMC Article

    06/20/2020
    High SFN expression is associated with Lung Adenocarcinogenesis.

    Stratifin Inhibits SCF(FBW7) Formation and Blocks Ubiquitination of Oncoproteins during the Course of Lung Adenocarcinogenesis.
    Shiba-Ishii A, Hong J, Hirokawa T, Kim Y, Nakagawa T, Sakashita S, Sakamoto N, Kozuma Y, Sato Y, Noguchi M.

    06/20/2020
    Stratifin (SFN) is highly expressed in cervical cancer (CC) tissues and CC cell lines compared with normal tissues and normal cell line. After interfering SFN, cell proliferation, migration and invasion ability is inhibited as well as cell apoptosis ability is promoted. Long intergenic non-protein coding RNA 1128 expedites cellular process in CC by binding with miR-383-5p to release SFN.

    LINC01128 expedites cervical cancer progression by regulating miR-383-5p/SFN axis.
    Hu Y, Ma Y, Liu J, Cai Y, Zhang M, Fang X., Free PMC Article

    04/11/2020
    Proteomic analysis of tubular epithelial cells obtained from patients with renal pathologies revealed overexpressing calreticulin along with the family of 14-3-3 proteins as key proteins overexpressed as well.

    The family of 14-3-3 proteins and specifically 14-3-3σ are up-regulated during the development of renal pathologies.
    Rizou M, Frangou EA, Marineli F, Prakoura N, Zoidakis J, Gakiopoulou H, Liapis G, Kavvadas P, Chatziantoniou C, Makridakis M, Vlahou A, Boletis J, Vlahakos D, Goumenos D, Daphnis E, Iatrou C, Charonis AS., Free PMC Article

    11/2/2019
    14-3-3sigma (also known as stratifin, encoded by SFN) interacted preferentially with S285-phosphorylated PKP3 to promote its accumulation at tricellular contact sites, leading to stable desmosomes.

    14-3-3 proteins regulate desmosomal adhesion via plakophilins.
    Rietscher K, Keil R, Jordan A, Hatzfeld M.

    11/2/2019
    Study shows that 14-3-3 protein sigma isoform co-localizes with phosphorylated alpha-synuclein in Lewy bodies and Lewy neurites in patients with Lewy body disease.

    14-3-3 protein sigma isoform co-localizes with phosphorylated α-synuclein in Lewy bodies and Lewy neurites in patients with Lewy body disease.
    Wakabayashi K, Umahara T, Hirokawa K, Hanyu H, Uchihara T.

    03/2/2019
    SFN enhances RTK stabilization through abnormal USP8 regulation in lung adenocarcinoma

    Stratifin regulates stabilization of receptor tyrosine kinases via interaction with ubiquitin-specific protease 8 in lung adenocarcinoma.
    Kim Y, Shiba-Ishii A, Nakagawa T, Iemura SI, Natsume T, Nakano N, Matsuoka R, Sakashita S, Lee S, Kawaguchi A, Sato Y, Noguchi M.

    02/23/2019
    we found that differential expression of BAK1, FIS1, and SFN were altered across the Barrett's disease sequence and manipulation of these genes elicited significant effects on mitochondrial membrane potential.

    The Mitochondrial Genes BAK1, FIS1 and SFN are Linked with Alterations in Mitochondrial Membrane Potential in Barrett's Esophagus.
    Phelan JJ, MacCarthy F, O'Toole D, Ravi N, Reynolds JV, O'Sullivan J., Free PMC Article

    02/16/2019
    silencing filamin A may inhibit the invasion and migration of breast cancer cells by upregulating 14-3-3sigma.

    Silencing Filamin A Inhibits the Invasion and Migration of Breast Cancer Cells by Up-regulating 14-3-3σ.
    Ji ZM, Yang LL, Ni J, Xu SP, Yang C, Duan P, Lou LP, Ruan QR.

    11/3/2018
    Over-expressed and hypo-methylated SFN gene is associated with hepatocellular carcinoma.

    Genome-wide DNA methylation analysis identifies candidate epigenetic markers and drivers of hepatocellular carcinoma.
    Zheng Y, Huang Q, Ding Z, Liu T, Xue C, Sang X, Gu J.

    10/27/2018
    Review/Meta-analysis: 14-3-3 sigma promoter methylation may be associated with the carcinogenesis of breast cancer and might represent a useful blood-based biomarker for the clinical diagnosis of breast cancer.

    Detection of 14-3-3 sigma (σ) promoter methylation as a noninvasive biomarker using blood samples for breast cancer diagnosis.
    Ye M, Huang T, Ying Y, Li J, Yang P, Ni C, Zhou C, Chen S., Free PMC Article

    03/3/2018
    14-3-3sigma has a paracrine effect in educating stromal cells in tumor-associated microenvironment.

    Paracrine regulation of matrix metalloproteinases contributes to cancer cell invasion by hepatocellular carcinoma-secreted 14-3-3σ.
    Liu CC, Chang TC, Lin YT, Yu YL, Ko BS, Sung LY, Liou JY., Free PMC Article

    01/13/2018
    This data indicates that 14-3-3sigma contributes to P-gp overexpression through interaction with PXR with rifampin and paclitaxel treatment.

    Role of 14-3-3 sigma in over-expression of P-gp by rifampin and paclitaxel stimulation through interaction with PXR.
    Kim SW, Md Hasanuzzaman, Cho M, Kim NH, Choi HY, Han JW, Park HJ, Oh JW, Shin JG.

    12/2/2017
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