Scientia Agricultura Sinica ›› 2018, Vol. 51 ›› Issue (17): 3389-3396.doi: 10.3864/j.issn.0578-1752.2018.17.013
• ANIMAL SCIENCE·VETERINARY SCIENCERE·SOURCE INSECT • Previous Articles Next Articles
ZHAO QingQing, LI JunPing, LIANG LiBin, HUANG ShanYu, ZHOU ChenChen, ZHAO YuHui, WANG Qian, ZHOU Yuan, JIANG Li, CHEN HuaLan, LI ChengJun
| [1] JOHNSON N P, MUELLER J. Updating the accounts: global mortality of the 1918-1920 “Spanish” influenza pandemic. Bulletin of the History of Medicine, 2002, 76(1): 105-115. DOI: 10.1353/bhm. 2002.0022.
[2] FOUCHIER R A, SCHNEEBERGER P M, ROZENDAAL F W, BROEKMAN J M, KEMINK S A, MUNSTER V, KUIKEN T, RIMMELZWAAN G F, SCHUTTEN M, VANDOORNUM G J, KOCH G, BOSMAN A, KOOPMANS M, OSTERHAUS A D. Avian influenza A virus (H7N7) associated with human conjunctivitis and a fatal case of acute respiratory distress syndrome. Proceedings of the National Academy of Sciences of the United States of America, 2004, 101(5): 1356-1361.
[3] BELSER J A, BRIDGES C B, KATZ J M, TUMPEY T M. Past, present, and possible future human infection with influenza virus A subtype H7. Emerging Infectious Diseases, 2009, 15(6): 859-865. DOI: 10.3201/eid1506.090072.
[4] WEBSTER R G, LAVER W G, AIR G M, SCHILD G C. Molecular mechanisms of variation in influenza viruses. Nature, 1982, 296(5853): 115-121.
[5] NEUMANN G, NODA T, KAWAOKA Y. Emergence and pandemic potential of swine origin H1N1 influenza virus. Nature, 2009, 459(7249): 931-939. DOI: 10.1038/nature08157.
[6] LINDSTROM S E, COX N J, KLIMOV A. Genetic analysis of human H2N2 and early H3N2 influenza viruses, 1957-1972: evidence for genetic divergence and multiple reassortment events. Virology, 2004, 328(1):101-119. DOI: 10.1016/j.virol.2004.06.009.
[7] HUANG T S, PALEASE P, KRYSTAL M. Determination of influenza virus proteins required for genome replication. Journal of Virology, 1990, 64(11): 5669-5673.
[8] NIETO A, DE LA LUNA S, BARCENA J, PORTELA A, ORTIN J. Complex structure of the nuclear translocation signal of influenza virus polymerase PA subunit. Journal of General Virology, 1994, 75(Pt 1): 29-36. DOI: 10.1099/0022-1317-75-1-29.
[9] PLESCHKA S, JASKUNAS R, ENGELHARDT O G, ZURCHER T, PALESE P, GARCIA-SASTRE A. A plasmid-based reverse genetics system for influenza A virus. Journal of Virology, 1996, 70(6): 4188-4192.
[10] NEUMANN G, WATANABE T, ITO H, WATANABE S, GOTO H, GAO P, HUGHES M, PEREZ D R, DONIS R, HOFFMANN E, HOBOM G, KAWAOKA Y. Generation of influenza A viruses entirely from cloned cDNAs. Proceedings of the National Academy of Sciences of the United States of America, 1999, 96(16): 9345-9350.
[11] HARA K, SCHMIDT F I, CROW M, BROWNLEE G G. Amino acid residues in the N-terminal region of the PA subunit of influenza A virus RNA polymerase play a critical role in protein stability, endonuclease activity, cap binging, and virion RNA promoter binding. Journal of Virology, 2006, 80(16): 7789-7798. DOI: 10.1128/JVI. 00600-06.
[12] Li M L, RAO P, KRUG R M. The active sites of the influenza cap-dependent endonuclease are on different polymerase subunits. The EMBO Journal, 2001, 20(8): 2078-2086. DOI: 10.1093/emboj/20.8. 2078.
[13] ZURCHER T, DE LA LUNA S, SANZ-EZQUERRO J J, NIETO A, ORTIN J. Mutational analysis of the influenza virus A/Victoria/3/75 PA protein: studies of interaction with PB1 protein and identification of a dominant negative mutant. Journal of General Virology, 1996, 77(Pt 8): 1745-1749. DOI: 10.1099/0022-1317-77-8-1745.
[14] SANZ-EZQUERRO J J, DE LA LUNA S, ORTIN J, NIETO A. Individual expression of influenza virus PA protein induces degradation of coexpressed proteins. Journal of Virology, 1995, 69(4): 2420-2426.
[15] SANZ-EZQUERRO J J, FERNANDEZ S J, SIERRA T, ARAGON T, ORTEGA J, ORTIN J, SMITH G L, NIETO A. The PA influenza virus polymerase subunit is a phosphorylated protein. Journal of General Virology, 1998, 79(Pt 3): 471-478. DOI: 10.1099/0022-1317-79-3- 471.
[16] YI C Y, ZHAO Z Z, WANG S Y, SUN X, ZHANG D, SUN X M, ZHANG A D, JIN M L. Influenza A virus PA antagonizes interferon-β by interacting with interferon regulatory factor 3. Frontiers in Immunology, 2017, 8: 1051. DOI: 10.3389/fimmu.2017.01051.
[17] WANG Q, LI Q H, LIU R R, ZHENG M Q, WEN J, ZHAO G P. Host cell interactome of PA protein of H5N1 influenza A virus in chicken cells. Journal of Proteomics, 2016, 136: 48-54. DOI: 10.1016/j.jprot. 2016.01.018.
[18] HSU W B, SHIH J L, SHIH J R, DU J L, TENG S C, HUANG L M, WANG W B. Cellular protein HAX1 interacts with the influenza A virus PA polymerase subunit and impedes its nuclear translocation. Journal of Virology, 2013, 87(1): 110-123. DOI: 10.1128/JVI. 00939-12.
[19] HUARTE M, SANZ-EZQUERRO J J, RONCAL F, ORTIN J, NIETO A. PA Subunit from influenza virus polymerase complex interacts with a cellular protein with homology to a family of transcriptional activators. Journal of Virology, 2001, 75(18): 8597-8604.
[20] RODRIGUEA A, PEREZ-GONZALEZ A, NIETO A. Cellular human CLE/C14orf166 protein interacts with influenza virus polymerase and is required for viral replication. Journal of Virology, 2011, 85(22): 12062-12066. DOI: 10.1128/JVI.00684-11.
[21] BEURA L K, DINH P X, OSORIO F A, PATTNAIK A K. Cellular poly(C) binding proteins 1 and 2 interact with porcine reproductive and respiratory syndrome virus nonstructural protein 1β and support viral replication. Journal of Virology, 2011, 85(24): 12939-12949. DOI: 10.1128/JVI.05177-11
[22] LI D, LI S, SUN Y, DONG H, LI Y F, ZHAO B B, GUO D W, WENG C J, QIU H J. Poly(C)-binding protein 1, a novel Npro-interacting protein involved in classical swine fever virus growth. Journal of Virology, 2013, 87(4): 2072-2080. DOI:10.1128/JVI.02807-12.
[23] WOOLAWAY K, ASAI K, EMILI A, COCHRANE A. hnRNP E1 and E2 have distinct roles in modulating HIV-1 gene expression. Retrovirology, 2007, 4: 28. DOI: 10.1186/1742-4690-4-28.
[24] GIETZ R D. Yeast transformation by the LiAc/SS carrier DNA/PEG method. Method in Molecular Biology, 2014, 1205:1-12. DOI: 10. 1007/978-1-4939-1363-3_1.
[25] 张险朋, 董瑜, 温贤诚, 徐振娜, 殷三鸿, 黄炳炽. 三种核酸提取方法检测禽流感病毒的比较. 动物医学进展, 2014, 35(11): 116-119. DOI: 10.16437/j.cnki.1007-5038.2014.11.001.
ZHANG X P, DONG Y, WEN X C, XU Z N, YIN S H, HUANG B Z. Comparison of three nucleic acid extraction methods for detection of avian influenza virus. Progress in Veterinary Medicine, 2014, 35(11): 116-119. DOI: 10.16437/j.cnki.1007-5038.2014.11.001. (in Chinese)
[26] 刘亚楠, 李珺, 华文浩, 宋淑静, 马小亮, 董建平, 宋蕊. 两种病毒核酸提取方法在流行感冒诊断中的比较. 中华实验和临床感染病杂志(电子版), 2017, 11(5): 474-478. DOI: 10.3877/cma.j.issn. 1674-1358.2017.05.010.
LIU Y N, LI J, HUA W H, SONG S J, MA X L, DONG J P, SONG R. Comparison of two nucleic acid extraction methods in detecting influenza. Chinese Journal of Experimental and Clinical Infectious Diseases(Electronic Edition), 2017, 11(5): 474-478. DOI: 10.3877/ cma.j.issn.1674-1358.2017.05.010. (in Chinese)
[27] FIELDS S, SONG O. A novel genetic system to detect protein-protein interactions. Nature, 1989, 340(6230): 245-246. DOI: 10.1038/ 340245a0.
[28] AASHEIM H C, LOUKIANOVA T, DEGGERDAL A, SMELAND E B. Tissue specific expression and cDNA structure of a human transcript encoding a nucleic acid binding [oligo(d C)] protein related to the pre-mRNA binding protein K. Nucleic Acids Research, 1994, 22(6): 959-964.
[29] 石宏顺, 周美凤, 童秀珍, 王海河. PCBP1在基因表达过程中的功能和作用机理. 生命的化学, 2013, 33(5): 535-542.
SHI H S, ZHOU M F, TONG X Z, WANG H H. The function and mechanism of PCBP1 in gene regulation. Chemistry of Life, 2013, 33(5): 535-542. (in Chinese)
[30] LIAN W X, YIN R H, KONG X Z, ZHANG T, HUANG X H, ZHENG W W, YANG Y, ZHAN Y Q, XU W X, YU M, GE C H, GUO J T, LI C Y, YANG X M. THAP11, a novel binding protein of PCBP1, negatively regulates CD44 alternative splicing and cell invasion in a human hepatoma cell line. FEBS Letters, 2012, 586(10): 1431-1438. DOI: 10.1016/j.febslet.2012.04.016.
[31] CHKHEIDZE A N, LIEBHABER S A. A novel set of nuclear localization signals determine distributions of the αCP RNA-binding proteins. Molecular and Cellular Biology, 2003, 23(23): 8405-8415.
[32] KIM J H, HAHM B, KIM Y K, CHOI M, JANG S K. Protein-protein interaction among hnRNPs shuttling between nucleus and cytoplasm. Journal of Molecular Biology, 2000, 298(3): 395-405. DOI: 10.1006/ jmbi.2000.3687.
[33] SHI Z, ZHANG T, LONG W, WANG X, ZHANG X, LING X, DING H. Down-regulation of poly(rC)-binding protein 1 correlates with the malignant transformation of hydatidiform moles. International journal of gynecological cancer: official journal of the International Gynecological Cancer Society, 2012, 22(7): 1125-1129. DOI: 10. 1097/IGC.0b013e3182606ac3.
[34] PILLAI M R, CHACKO P, KESAN L A, JAYAPRAKASH P G, JAYARAM H N, ANTONY A C. Expression of folate receptors and heterogeneous nuclear ribonucleoprotein E1 in women with human papillomavirus mediated transformation of cervical tissue to cancer. Journal of Clinical Pathology, 2003, 56(8): 569-574.
[35] WANG H H, VARDY L A, TAN C P, LOO J M, GUO K, LI J, LIM S G, ZHOU J, CHNG W J, NG S B, LI H X, ZENG Q. PCBP1 suppresses the translation of metastasis-associated PRL-3 phosphatase. Cancer Cell, 2010, 18(1): 52-62. DOI: 10.1016/j.ccr.2010.04.028. |
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