1 |
Bhattacharya et al. |
Oncogene |
2013 |
22847610 |
Regulation of cell cycle checkpoint kinase WEE1 by miR-195 in malignant melanoma. |
2 |
Qi et al. |
Cell Cycle |
2009 |
19823043 |
microRNAs regulate human embryonic stem cell division. |
3 |
Hafner et al. |
Cell |
2010 |
20371350 |
Transcriptome-wide identification of RNA-binding protein and microRNA target sites by PAR-CLIP. |
4 |
Kishore et al. |
Nat. Methods |
2011 |
21572407 |
A quantitative analysis of CLIP methods for identifying binding sites of RNA-binding proteins. |
5 |
Xu et al. |
Hepatology |
2009 |
19441017 |
MicroRNA-195 suppresses tumorigenicity and regulates G1/S transition of human hepatocellular carcinoma cells. |
6 |
Zhang et al. |
Neuro-oncology |
2012 |
22217655 |
MicroRNA-195 plays a tumor-suppressor role in human glioblastoma cells by targeting signaling pathways involved in cellular proliferation and invasion. |
7 |
Riley et al. |
EMBO J. |
2012 |
22473208 |
EBV and human microRNAs co-target oncogenic and apoptotic viral and human genes during latency. |
8 |
Deng et al. |
Gene |
2013 |
23333942 |
MicroRNA-195 and microRNA-378 mediate tumor growth suppression by epigenetical regulation in gastric cancer. |
9 |
Whisnant et al. |
MBio |
2013 |
23592263 |
In-depth analysis of the interaction of HIV-1 with cellular microRNA biogenesis and effector mechanisms. |
10 |
Jia et al. |
PLoS ONE |
2013 |
23451060 |
Prognostic implications of micoRNA miR-195 expression in human tongue squamous cell carcinoma. |
11 |
Luo et al. |
Oncol. Rep. |
2014 |
24402230 |
MicroRNA-195-5p is a potential diagnostic and therapeutic target for breast cancer. |
12 |
Hui et al. |
PLoS ONE |
2013 |
23383003 |
MicroRNA-195 inhibits the proliferation of human glioma cells by directly targeting cyclin D1 and cyclin E1. |
13 |
Farazi et al. |
Genome Biol. |
2014 |
24398324 |
Identification of distinct miRNA target regulation between breast cancer molecular subtypes using AGO2-PAR-CLIP and patient datasets. |
14 |
Murakami et al. |
Oncogene |
2006 |
16331254 |
Comprehensive analysis of microRNA expression patterns in hepatocellular carcinoma and non-tumorous tissues. |
15 |
Ye et al. |
PLoS ONE |
2008 |
18320040 |
The effect of central loops in miRNA:MRE duplexes on the efficiency of miRNA-mediated gene regulation. |
16 |
Wang et al. |
Hepatology |
2013 |
23468064 |
MicroRNA-195 suppresses angiogenesis and metastasis of hepatocellular carcinoma by inhibiting the expression of VEGF, VAV2, and CDC42. |
17 |
Memczak et al. |
Nature |
2013 |
23446348 |
Circular RNAs are a large class of animal RNAs with regulatory potency. |
18 |
Lipchina et al. |
Genes Dev. |
2011 |
22012620 |
Genome-wide identification of microRNA targets in human ES cells reveals a role for miR-302 in modulating BMP response. |
19 |
Gonsalves et al. |
J. Immunol. |
2010 |
20952681 |
Endothelin-1-induced macrophage inflammatory protein-1beta expression in monocytic cells involves hypoxia-inducible factor-1alpha and AP-1 and is negatively regulated by microRNA-195. |
20 |
Liu et al. |
Biochem. Biophys. Res. Commun. |
2010 |
20727858 |
microRNA-195 promotes apoptosis and suppresses tumorigenicity of human colorectal cancer cells. |
21 |
Li et al. |
Clin. Cancer Res. |
2011 |
21350001 |
Analysis of MiR-195 and MiR-497 expression, regulation and role in breast cancer. |
22 |
Yang et al. |
Oncol. Rep. |
2013 |
23760062 |
Upregulation of miR-195 increases the sensitivity of breast cancer cells to Adriamycin treatment through inhibition of Raf-1. |
23 |
Fei et al. |
FEBS Lett. |
2012 |
22265971 |
MicroRNA-195-5p suppresses glucose uptake and proliferation of human bladder cancer T24 cells by regulating GLUT3 expression. |
24 |
Furuta et al. |
PLoS ONE |
2013 |
23544130 |
The tumor-suppressive miR-497-195 cluster targets multiple cell-cycle regulators in hepatocellular carcinoma. |
25 |
Lin et al. |
FEBS Lett. |
2012 |
22289176 |
Cyclin-dependent kinase 4 is a novel target in micoRNA-195-mediated cell cycle arrest in bladder cancer cells. |
26 |
Fu et al. |
FEBS Lett. |
2013 |
24025765 |
Differential expression of miR-195 in esophageal squamous cell carcinoma and miR-195 expression inhibits tumor cell proliferation and invasion by targeting of Cdc42. |
27 |
Wang et al. |
Cardiovasc. Res. |
2012 |
22802111 |
MicroRNA-195 regulates vascular smooth muscle cell phenotype and prevents neointimal formation. |
28 |
Chen et al. |
PLoS ONE |
2012 |
22844503 |
Micro-RNA-195 and -451 regulate the LKB1/AMPK signaling axis by targeting MO25. |
29 |
Ding et al. |
Hepatology |
2013 |
23487264 |
Genome-wide screening reveals that miR-195 targets the TNF-α/NF-κB pathway by down-regulating IκB kinase alpha and TAB3 in hepatocellular carcinoma. |
30 |
Liu et al. |
PLoS ONE |
2013 |
23349673 |
An epigenetic feedback regulatory loop involving microRNA-195 and MBD1 governs neural stem cell differentiation. |
31 |
Qu et al. |
J. Cell. Physiol. |
2015 |
23526568 |
MicroRNA-195 chemosensitizes colon cancer cells to the chemotherapeutic drug doxorubicin by targeting the first binding site of BCL2L2 mRNA. |
32 |
Helwak et al. |
Cell |
2013 |
23622248 |
Mapping the human miRNA interactome by CLASH reveals frequent noncanonical binding. |
33 |
Caramuta et al. |
Endocr. Relat. Cancer |
2013 |
23671264 |
Clinical and functional impact of TARBP2 over-expression in adrenocortical carcinoma. |
34 |
Mao et al. |
Oncol Lett |
2012 |
23162665 |
microRNA-195 suppresses osteosarcoma cell invasion and migration in vitro by targeting FASN. |
35 |
Zhou et al. |
Cell Death Dis |
2013 |
23807224 |
MicroRNA-195 targets ADP-ribosylation factor-like protein 2 to induce apoptosis in human embryonic stem cell-derived neural progenitor cells. |
36 |
Itesako et al. |
PLoS ONE |
2014 |
24520312 |
The microRNA expression signature of bladder cancer by deep sequencing: the functional significance of the miR-195/497 cluster. |
37 |
Yongchun et al. |
Cancer Lett. |
2014 |
24486218 |
MicroRNA-195 inhibits non-small cell lung cancer cell proliferation, migration and invasion by targeting MYB. |
38 |
Shi et al. |
Glia |
2013 |
23361941 |
Increased miR-195 aggravates neuropathic pain by inhibiting autophagy following peripheral nerve injury. |
39 |
Gottwein et al. |
Cell Host Microbe |
2011 |
22100165 |
Viral microRNA targetome of KSHV-infected primary effusion lymphoma cell lines. |
40 |
Xue et al. |
Cell |
2013 |
23313552 |
Direct conversion of fibroblasts to neurons by reprogramming PTB-regulated microRNA circuits. |
41 |
Majoros et al. |
Nat. Methods |
2013 |
23708386 |
MicroRNA target site identification by integrating sequence and binding information. |
42 |
Chi et al. |
Nature |
2009 |
19536157 |
Argonaute HITS-CLIP decodes microRNA-mRNA interaction maps. |
43 |
Karginov et al. |
Genes Dev. |
2013 |
23824327 |
Remodeling of Ago2-mRNA interactions upon cellular stress reflects miRNA complementarity and correlates with altered translation rates. |
44 |
Pillai et al. |
Breast Cancer Res. Treat. |
2014 |
24906430 |
HITS-CLIP reveals key regulators of nuclear receptor signaling in breast cancer. |
45 |
Lu et al. |
PLoS ONE |
2012 |
22815788 |
MicroRNA profiling in mucosal biopsies of eosinophilic esophagitis patients pre and post treatment with steroids and relationship with mRNA targets. |
46 |
Yang et al. |
FEBS Lett. |
2014 |
25240198 |
Saturated fatty acid-induced miR-195 impairs insulin signaling and glycogen metabolism in HepG2 cells. |
47 |
Zampetaki et al. |
Circ. Res. |
2014 |
25201911 |
Role of miR-195 in aortic aneurysmal disease. |
48 |
Díaz-Beyá et al. |
Leukemia |
2013 |
23022987 |
Acute myeloid leukemia with translocation (8;16)(p11;p13) and MYST3-CREBBP rearrangement harbors a distinctive microRNA signature targeting RET proto-oncogene. |
49 |
Skalsky et al. |
PLoS Pathog. |
2012 |
22291592 |
The viral and cellular microRNA targetome in lymphoblastoid cell lines. |
50 |
Haecker et al. |
PLoS Pathog. |
2012 |
22927820 |
Ago HITS-CLIP expands understanding of Kaposi's sarcoma-associated herpesvirus miRNA function in primary effusion lymphomas. |
51 |
Kishore et al. |
Genome Biol. |
2013 |
23706177 |
Insights into snoRNA biogenesis and processing from PAR-CLIP of snoRNA core proteins and small RNA sequencing. |