For: | Chen YN, Chen H, Xu Y, Zhang X, Luo Y. Expression of pituitary homeobox 1 gene in human gastric carcinogenesis and its clinicopathological significance. World J Gastroenterol 2008; 14(2): 292-297 [PMID: 18186570 DOI: 10.3748/wjg.14.292] |
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URL: | https://www.wjgnet.com/1007-9327/full/v14/i2/292.htm |
Number | Citing Articles |
1 |
Michael Daniel, Gregory W. Peek, Trygve O. Tollefsbol. Regulation of the human catalytic subunit of telomerase (hTERT). Gene 2012; 498(2): 135 doi: 10.1016/j.gene.2012.01.095
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2 |
Takahito Ohira, Hirotada Kojima, Yuko Kuroda, Sayaka Aoki, Daigo Inaoka, Mitsuhiko Osaki, Hideki Wanibuchi, Futoshi Okada, Mitsuo Oshimura, Hiroyuki Kugoh, Klaus Roemer. PITX1 protein interacts with ZCCHC10 to regulate hTERT mRNA transcription. PLOS ONE 2019; 14(8): e0217605 doi: 10.1371/journal.pone.0217605
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3 |
Xiaohui Shen, Yuejun Gu, Shengling Yu, Pihai Gong, Yuhang Mao, Yiping Li, Ying Zheng, Fengchang Qiao, Zhujiang Zhao, Hong Fan. Silenced PITX1 promotes chemotherapeutic resistance to 5‑fluorocytosine and cisplatin in gastric cancer cells. Experimental and Therapeutic Medicine 2019; doi: 10.3892/etm.2019.7459
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4 |
MOTOKI NAKABAYASHI, MITSUHIKO OSAKI, ISAMU KODANI, FUTOSHI OKADA, KAZUO RYOKE, MITSUO OSHIMURA, HISAO ITO, HIROYUKI KUGOH. PITX1 is a reliable biomarker for predicting prognosis in patients with oral epithelial dysplasia. Oncology Letters 2014; 7(3): 750 doi: 10.3892/ol.2013.1775
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5 |
Yu Jin, Xing Qin. Paired like homeodomain 1 and SAM and SH3 domain-containing 1 in the progression and prognosis of head and neck squamous cell carcinoma. The International Journal of Biochemistry & Cell Biology 2020; 127: 105846 doi: 10.1016/j.biocel.2020.105846
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6 |
Jingpu Zhao, Yongfeng Xu. PITX1 plays essential functions in cancer. Frontiers in Oncology 2023; 13 doi: 10.3389/fonc.2023.1253238
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7 |
Current World Literature. Current Opinion in Endocrinology, Diabetes & Obesity 2008; 15(4): 383 doi: 10.1097/MED.0b013e32830c6b8e
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8 |
Evan P. Booy, Ryan Howard, Oksana Marushchak, Emmanuel O. Ariyo, Markus Meier, Stefanie K. Novakowski, Soumya R. Deo, Edis Dzananovic, Jörg Stetefeld, Sean A. McKenna. The RNA helicase RHAU (DHX36) suppresses expression of the transcription factor PITX1. Nucleic Acids Research 2014; 42(5): 3346 doi: 10.1093/nar/gkt1340
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9 |
Milad Ashrafizadeh, Hossein Rafiei, Reza Mohammadinejad, Tahereh Farkhondeh, Saeed Samarghandian. Wnt-regulating microRNAs role in gastric cancer malignancy. Life Sciences 2020; 250: 117547 doi: 10.1016/j.lfs.2020.117547
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10 |
Dong-Lai Qi, Takahito Ohhira, Chikako Fujisaki, Toshiaki Inoue, Tsutomu Ohta, Mitsuhiko Osaki, Eriko Ohshiro, Tomomi Seko, Shinsuke Aoki, Mitsuo Oshimura, Hiroyuki Kugoh. Identification of PITX1 as a TERT Suppressor Gene Located on Human Chromosome 5. Molecular and Cellular Biology 2011; 31(8): 1624 doi: 10.1128/MCB.00470-10
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11 |
ZUHU YU, DUQUN CHEN, ZHENGMING SU, YIFAN LI, WENSHUI YU, QIANG ZHANG, LIHUA YANG, CAILING LI, SHANGQI YANG, LIANGCHAO NI, YAOTING GUI, ZEBIN MAO, YONGQING LAI. miR-886-3p upregulation in clear cell renal cell carcinoma regulates cell migration, proliferation and apoptosis by targeting PITX1. International Journal of Molecular Medicine 2014; 34(5): 1409 doi: 10.3892/ijmm.2014.1923
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12 |
Veroushka Ballester, William R Taylor, Seth W Slettedahl, Douglas W Mahoney, Tracy C Yab, Frank A Sinicrope, Clement R Boland, Graham P Lidgard, Marcia R Cruz-Correa, Thomas C Smyrk, Lisa A Boardman, David A Ahlquist, John B Kisiel. Novel Methylated DNA Markers Accurately Discriminate Lynch Syndrome Associated Colorectal Neoplasia. Epigenomics 2020; 12(24): 2173 doi: 10.2217/epi-2020-0132
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13 |
Takahito Ohira, Sunamura Naohiro, Yuji Nakayama, Mitsuhiko Osaki, Futoshi Okada, Mitsuo Oshimura, Hiroyuki Kugoh. miR-19b regulates hTERT mRNA expression through targeting PITX1 mRNA in melanoma cells. Scientific Reports 2015; 5(1) doi: 10.1038/srep08201
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14 |
Tatiana N Libório, Thais Acquafreda, Luciana F Matizonkas‐Antonio, Maria G Silva‐Valenzuela, Alberto R Ferraz, Fabio D Nunes. In situ hybridization detection of homeobox genes reveals distinct expression patterns in oral squamous cell carcinomas. Histopathology 2011; 58(2): 225 doi: 10.1111/j.1365-2559.2011.03751.x
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15 |
Juntao Ke, Jiao Lou, Xueqin Chen, Jiaoyuan Li, Cheng Liu, Yajie Gong, Yang Yang, Ying Zhu, Yi Zhang, Jing Gong, Yifeng Zhou. Identification of a Potential Regulatory Variant for Colorectal Cancer Risk Mapping to Chromosome 5q31.1: A Post-GWAS Study. PLOS ONE 2015; 10(9): e0138478 doi: 10.1371/journal.pone.0138478
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16 |
Takahito Ohira, Suguru Nakagawa, Jumpei Takeshita, Hiroyuki Aburatani, Hiroyuki Kugoh. PITX1 inhibits the growth and proliferation of melanoma cells through regulation of SOX family genes. Scientific Reports 2021; 11(1) doi: 10.1038/s41598-021-97791-6
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17 |
Lei Liu, Yan-Chun Tian, Gang Mao, Yun-Gui Zhang, Li Han. MiR-675 is frequently overexpressed in gastric cancer and enhances cell proliferation and invasion via targeting a potent anti-tumor gene PITX1. Cellular Signalling 2019; 62: 109352 doi: 10.1016/j.cellsig.2019.109352
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18 |
Madhawa Neranjan Gunathilake, Jeonghee Lee, Young Ae Cho, Jae Hwan Oh, Hee Jin Chang, Dae Kyung Sohn, Aesun Shin, Jeongseon Kim. Interaction between physical activity,PITX1rs647161 genetic polymorphism and colorectal cancer risk in a Korean population: a case-control study. Oncotarget 2018; 9(7): 7590 doi: 10.18632/oncotarget.24136
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19 |
HONG CHEN, XIAO-WEI YANG, HUI ZHANG, QING YANG, ZHI WANG, YANG LIU, FENG-LIN LU, BAO-YI ZHOU, CHENG-HUI QIU-XI, SHENG-LIN LU. In vivo and in vitro expression of the RASAL1 gene in human gastric adenocarcinoma and its clinicopathological significance. Oncology Letters 2012; 3(3): 535 doi: 10.3892/ol.2011.513
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20 |
Wei Jiang, Yaozhou He, Yijun Shi, Zizhang Guo, Shikun Yang, Ke Wei, Chunfeng Pan, Yang Xia, Yijiang Chen. MicroRNA‐1204 promotes cell proliferation by regulating PITX1 in non‐small‐cell lung cancer. Cell Biology International 2019; 43(3): 253 doi: 10.1002/cbin.11083
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21 |
Figen Barut, Perihan Udul, Furuzan Kokturk, Nilufer Onak Kandemir, Sevinc Hallac Keser, Sukru Oguz Ozdamar. Clinicopathological features and pituitary homeobox 1 gene expression in the progression and prognosis of cutaneous malignant melanoma. The Kaohsiung Journal of Medical Sciences 2016; 32(10): 494 doi: 10.1016/j.kjms.2016.08.001
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22 |
Hiroyuki Kugoh, Takahito Ohira, Mitsuo Oshimura. Studies of Tumor Suppressor Genes via Chromosome Engineering. Cancers 2015; 8(1): 4 doi: 10.3390/cancers8010004
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23 |
MASAO TAKENOBU, MITSUHIKO OSAKI, KAZUNORI FUJIWARA, TAKAHIRO FUKUHARA, HIROYA KITANO, HIROYUKI KUGOH, FUTOSHI OKADA. PITX1 is a novel predictor of the response to chemotherapy in head and neck squamous cell carcinoma. Molecular and Clinical Oncology 2016; 5(1): 89 doi: 10.3892/mco.2016.880
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24 |
Chih-Yung Yang, Ruey-Hwa Lu, Chien-Hsing Lin, Chih-Hung Jen, Chien-Yi Tung, Shung-Haur Yang, Jen-Kou Lin, Jeng-Kai Jiang, Chi-Hung Lin, Amanda Ewart Toland. Single Nucleotide Polymorphisms Associated with Colorectal Cancer Susceptibility and Loss of Heterozygosity in a Taiwanese Population. PLoS ONE 2014; 9(6): e100060 doi: 10.1371/journal.pone.0100060
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25 |
Thomas Knösel, Yuan Chen, Stefanie Hotovy, Utz Settmacher, Annelore Altendorf-Hofmann, Iver Petersen. Loss of desmocollin 1-3 and homeobox genes PITX1 and CDX2 are associated with tumor progression and survival in colorectal carcinoma. International Journal of Colorectal Disease 2012; 27(11): 1391 doi: 10.1007/s00384-012-1460-4
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26 |
Gengbin Kong, Zhaoyong Liu, Kezhou Wu, Ying Zhang, Zhihua Deng, Weili Feng, Shubiao Chen, Hu Wang. Strong expression of paired-like homeodomain transcription factor 1 (PITX1) is associated with a favorable outcome in human osteosarcoma. Tumor Biology 2015; 36(10): 7735 doi: 10.1007/s13277-015-3512-1
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27 |
Takeshi Otsubo, Kazuhiko Yamada, Teruki Hagiwara, Kenshiro Oshima, Kei Iida, Koro Nishikata, Tetsuro Toyoda, Toru Igari, Kyoko Nohara, Satoshi Yamashita, Masahira Hattori, Taeko Dohi, Yuki I. Kawamura. DNA hypermethyation and silencing ofPITX1correlated with advanced stage and poor postoperative prognosis of esophageal squamous cell carcinoma. Oncotarget 2017; 8(48): 84434 doi: 10.18632/oncotarget.21375
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28 |
Wei-Hua Jia, Ben Zhang, Keitaro Matsuo, Aesun Shin, Yong-Bing Xiang, Sun Ha Jee, Dong-Hyun Kim, Zefang Ren, Qiuyin Cai, Jirong Long, Jiajun Shi, Wanqing Wen, Gong Yang, Ryan J Delahanty, Bu-Tian Ji, Zhi-Zhong Pan, Fumihiko Matsuda, Yu-Tang Gao, Jae Hwan Oh, Yoon-Ok Ahn, Eun Jung Park, Hong-Lan Li, Ji Won Park, Jaeseong Jo, Jin-Young Jeong, Satoyo Hosono, Graham Casey, Ulrike Peters, Xiao-Ou Shu, Yi-Xin Zeng, Wei Zheng. Genome-wide association analyses in east Asians identify new susceptibility loci for colorectal cancer. Nature Genetics 2013; 45(2): 191 doi: 10.1038/ng.2505
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