留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Arabidopsis AtVPS15 Plays Essential Roles in Pollen Germination Possibly by Interacting with AtVPS34

Wei-Ying Wang Li Zhang Shufan Xing Zhiqiang Ma Jingjing Liu Hongya Gu Genji Qin Li-Jia Qu

Wei-Ying Wang, Li Zhang, Shufan Xing, Zhiqiang Ma, Jingjing Liu, Hongya Gu, Genji Qin, Li-Jia Qu. Arabidopsis AtVPS15 Plays Essential Roles in Pollen Germination Possibly by Interacting with AtVPS34[J]. Journal of Genetics and Genomics, 2012, 39(2): 81-92. doi: 10.1016/j.jgg.2012.01.002
Citation: Wei-Ying Wang, Li Zhang, Shufan Xing, Zhiqiang Ma, Jingjing Liu, Hongya Gu, Genji Qin, Li-Jia Qu. Arabidopsis AtVPS15 Plays Essential Roles in Pollen Germination Possibly by Interacting with AtVPS34[J]. Journal of Genetics and Genomics, 2012, 39(2): 81-92. doi: 10.1016/j.jgg.2012.01.002

doi: 10.1016/j.jgg.2012.01.002

Arabidopsis AtVPS15 Plays Essential Roles in Pollen Germination Possibly by Interacting with AtVPS34

More Information
    • 关键词:
    •  / 
    •  / 
    •  
  • [1] Alexander, M.P. Differential staining of aborted and nonaborted pollen Stain Technol., 44 (1969),pp. 117-122
    [2] Alonso, J.M., Stepanova, A.N. Methods Mol. Biol., 236 (2003),pp. 177-188
    [3] Bankaitis, V.A., Johnson, L.M., Emr, S.D. Isolation of yeast mutants defective in protein targeting to the vacuole Proc. Natl. Acad. Sci. USA, 83 (1986),pp. 9075-9079
    [4] Budovskaya, Y.V., Hama, H., DeWald, D.B. et al. The C terminus of the Vps34p phosphoinositide 3-kinase is necessary and sufficient for the interaction with the Vps15p protein kinase J. Biol. Chem., 277 (2002),pp. 287-294
    [5] Cantley, L.C. The phosphoinositide 3-kinase pathway Science, 296 (2002),pp. 1655-1657
    [6] Chrispeels, M.J., Crawford, N.M., Schroeder, J.I. Proteins for transport of water and mineral nutrients across the membranes of plant cells Plant Cell, 11 (1999),pp. 661-676
    [7] Christoforidis, S., Miaczynska, M., Ashman, K. et al. Phosphatidylinositol-3-OH kinases are Rab5 effectors Nat. Cell Biol., 1 (1999),pp. 249-252
    [8] Clamp, M., Cuff, J., Searle, S.M. et al. The Jalview Java alignment editor Bioinformatics, 20 (2004),pp. 426-427
    [9] Copenhaver, G.P., Keith, K.C., Preuss, D. Tetrad analysis in higher plants. A budding technology Plant Physiol., 124 (2000),pp. 7-16
    [10] Deng, Y., Wang, W., Li, W.Q. et al. J. Integr. Plant Biol., 52 (2010),pp. 829-843
    [11] Earley, K.W., Haag, J.R., Pontes, O. et al. Gateway-compatible vectors for plant functional genomics and proteomics Plant J., 45 (2006),pp. 616-629
    [12] Fimia, G.M., Stoykova, A., Romagnoli, A. et al. Ambra1 regulates autophagy and development of the nervous system Nature, 447 (2007),pp. 1121-1125
    [13] Franklin-Tong, V.E., Drobak, B.K., Allan, A.C. et al. Plant Cell, 8 (1996),pp. 1305-1321
    [14] Fruman, D.A., Meyers, R.E., Cantley, L.C. Phosphoinositide kinases Annu. Rev. Biochem., 67 (1998),pp. 481-507
    [15] Fujiki, Y., Yoshimoto, K., Ohsumi, Y. Plant Physiol., 143 (2007),pp. 1132-1139
    [16] Funderburk, S.F., Wang, Q.J., Yue, Z. The Beclin 1-VPS34 complex – at the crossroads of autophagy and beyond Trends Cell Biol., 20 (2010),pp. 355-362
    [17] Goldberg, J. Structural basis for activation of ARF GTPase: mechanisms of guanine nucleotide exchange and GTP-myristoyl switching Cell, 95 (1998),pp. 237-248
    [18] Guo, Y., Qin, G., Gu, H. et al. Plant Cell, 21 (2009),pp. 3518-3534
    [19] Hanakam, F., Gerisch, G., Lotz, S. et al. Binding of hisactophilin I and II to lipid membranes is controlled by a pH-dependent myristoyl-histidine switch Biochemistry, 35 (1996),pp. 11036-11044
    [20] Harrison-Lowe, N.J., Olsen, L.J. Autophagy, 4 (2008),pp. 339-348
    [21] Herman, P.K., Stack, J.H., Emr, S.D. A genetic and structural analysis of the yeast Vps15 protein kinase: evidence for a direct role of Vps15p in vacuolar protein delivery EMBO J., 10 (1991),pp. 4049-4060
    [22] Herman, P.K., Stack, J.H., DeModena, J.A. et al. A novel protein kinase homolog essential for protein sorting to the yeast lysosome-like vacuole Cell, 64 (1991),pp. 425-437
    [23] Hermida-Matsumoto, L., Resh, M.D. Human immunodeficiency virus type 1 protease triggers a myristoyl switch that modulates membrane binding of Pr55(gag) and p17MA J. Virol., 73 (1999),pp. 1902-1908
    [24] Holsters, M., de Waele, D., Depicker, A. et al. Mol. Gen. Genet., 163 (1978),pp. 181-187
    [25] Ikeda, S., Nasrallah, J.B., Dixit, R. et al. Science, 276 (1997),pp. 1564-1566
    [26] Itakura, E., Kishi, C., Inoue, K. et al. Beclin 1 forms two distinct phosphatidylinositol 3-kinase complexes with mammalian Atg14 and UVRAG Mol. Biol. Cell, 19 (2008),pp. 5360-5372
    [27] Jefferson, R.A., Kavanagh, T.A., Bevan, M.W. GUS fusions: beta-glucuronidase as a sensitive and versatile gene fusion marker in higher plants EMBO J., 6 (1987),pp. 3901-3907
    [28] Johnson, S.A., McCormick, S. Plant Physiol., 126 (2001),pp. 685-695
    [29] Johnsson, N., Varshavsky, A. Proc. Natl. Acad. Sci. USA, 91 (1994),pp. 10340-10344
    [30] Kihara, A., Noda, T., Ishihara, N. et al. J. Cell Biol., 152 (2001),pp. 519-530
    [31] Kihara, A., Kabeya, Y., Ohsumi, Y. et al. Beclin-phosphatidylinositol 3-kinase complex functions at the trans-Golgi network EMBO Rep., 2 (2001),pp. 330-335
    [32] Krichevsky, A., Kozlovsky, S.V., Tian, G.W. et al. How pollen tubes grow Dev. Biol., 303 (2007),pp. 405-420
    [33] Lee, Y., Kim, E.S., Choi, Y. et al. Plant Physiol., 147 (2008),pp. 1886-1897
    [34] Letunic, I., Doerks, T., Bork, P. SMART 6: recent updates and new developments Nucleic Acids Res., 37 (2009),pp. D229-D232
    [35] Li, H., Lin, Y., Heath, R.M. et al. Control of pollen tube tip growth by a Rop GTPase-dependent pathway that leads to tip-localized calcium influx Plant Cell, 11 (1999),pp. 1731-1742
    [36] Liang, C., Lee, J.S., Inn, K.S. et al. Beclin1-binding UVRAG targets the class C Vps complex to coordinate autophagosome maturation and endocytic trafficking Nat. Cell Biol., 10 (2008),pp. 776-787
    [37] Liu, J., Zhang, Y., Qin, G. et al. Plant Cell, 20 (2008),pp. 1538-1554
    [38] Livak, K.J., Schmittgen, T.D. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) method Methods, 25 (2001),pp. 402-408
    [39] Matsunaga, K., Saitoh, T., Tabata, K. et al. Two Beclin 1-binding proteins, Atg14L and Rubicon, reciprocally regulate autophagy at different stages Nat. Cell Biol., 11 (2009),pp. 385-396
    [40] Mayfield, J.A., Preuss, D. Nat. Cell Biol., 2 (2000),pp. 128-130
    [41] McLaughlin, S., Aderem, A. The myristoyl-electrostatic switch: a modulator of reversible protein-membrane interactions Trends Biochem. Sci., 20 (1995),pp. 272-276
    [42] Muschietti, J., Dircks, L., Vancanneyt, G. et al. LAT52 protein is essential for tomato pollen development: pollen expressing antisense LAT52 RNA hydrates and germinates abnormally and cannot achieve fertilization Plant J., 6 (1994),pp. 321-338
    [43] Needleman, S.B., Wunsch, C.D. A general method applicable to the search for similarities in the amino acid sequence of two proteins J. Mol. Biol., 48 (1970),pp. 443-453
    [44] Obara, K., Sekito, T., Ohsumi, Y. Mol. Biol. Cell, 17 (2006),pp. 1527-1539
    [45] Obermeyer, G., Weisenseel, M.H. Calcium channel blocker and calmodulin antagonists affect the gradient of free calcium ions in lily pollen tubes Eur. J. Cell Biol., 56 (1991),pp. 319-327
    [46] Obrdlik, P., El-Bakkoury, M., Hamacher, T. et al. Proc. Natl. Acad. Sci. USA, 101 (2004),pp. 12242-12247
    [47] Olsen, H.B., Kaarsholm, N.C. Structural effects of protein lipidation as revealed by LysB29-myristoyl, des(B30) insulin Biochemistry, 39 (2000),pp. 11893-11900
    [48] Panaretou, C., Domin, J., Cockcroft, S. et al. Characterization of p150, an adaptor protein for the human phosphatidylinositol (PtdIns) 3-kinase. Substrate presentation by phosphatidylinositol transfer protein to the p150.Ptdins 3-kinase complex J. Biol. Chem., 272 (1997),pp. 2477-2485
    [49] Petiot, A., Faure, J., Stenmark, H. et al. PI3P signaling regulates receptor sorting but not transport in the endosomal pathway J. Cell Biol., 162 (2003),pp. 971-979
    [50] Pierson, E.S., Miller, D.D., Callaham, D.A. et al. Pollen tube growth is coupled to the extracellular calcium ion flux and the intracellular calcium gradient: effect of BAPTA-type buffers and hypertonic media Plant Cell, 6 (1994),pp. 1815-1828
    [51] Preuss, D., Rhee, S.Y., Davis, R.W. Science, 264 (1994),pp. 1458-1460
    [52] Preuss, D., Lemieux, B., Yen, G. et al. Genes Dev., 7 (1993),pp. 974-985
    [53] Qi, Q., Rajala, R.V., Anderson, W. et al. J. Biol. Chem., 275 (2000),pp. 9673-9683
    [54] Qin, G., Ma, Z., Zhang, L. et al. Cell Res., 17 (2007),pp. 249-263
    [55] Qin, G., Gu, H., Zhao, Y. et al. Plant Cell, 17 (2005),pp. 2693-2704
    [56] Rathore, K.S., Cork, R.J., Robinson, K.R. Dev. Biol., 148 (1991),pp. 612-619
    [57] Regan, S.M., Moffatt, B.A. Plant Cell, 2 (1990),pp. 877-889
    [58] Resh, M.D. Fatty acylation of proteins: new insights into membrane targeting of myristoylated and palmitoylated proteins Biochim. Biophys. Acta., 1451 (1999),pp. 1-16
    [59] Robinson, J.S., Klionsky, D.J., Banta, L.M. et al. Mol. Cell. Biol., 8 (1988),pp. 4936-4948
    [60] Roth, M.G. Phosphoinositides in constitutive membrane traffic Physiol. Rev., 84 (2004),pp. 699-730
    [61] Rothman, J.H., Stevens, T.H. Protein sorting in yeast: mutants defective in vacuole biogenesis mislocalize vacuolar proteins into the late secretory pathway Cell, 47 (1986),pp. 1041-1051
    [62] Schu, P.V., Takegawa, K., Fry, M.J. et al. Phosphatidylinositol 3-kinase encoded by yeast VPS34 gene essential for protein sorting Science, 260 (1993),pp. 88-91
    [63] Schultz, J., Milpetz, F., Bork, P. et al. SMART, a simple modular architecture research tool: identification of signaling domains Proc. Natl. Acad. Sci. USA, 95 (1998),pp. 5857-5864
    [64] Stack, J.H., Emr, S.D. Vps34p required for yeast vacuolar protein sorting is a multiple specificity kinase that exhibits both protein kinase and phosphatidylinositol-specific PI 3-kinase activities J. Biol. Chem., 269 (1994),pp. 31552-31562
    [65] Stack, J.H., Herman, P.K., Schu, P.V. et al. A membrane-associated complex containing the Vps15 protein kinase and the Vps34 PI 3-kinase is essential for protein sorting to the yeast lysosome-like vacuole EMBO J., 12 (1993),pp. 2195-2204
    [66] Stagljar, I., Korostensky, C., Johnsson, N. et al. Proc. Natl. Acad. Sci. USA, 95 (1998),pp. 5187-5192
    [67] Stein, M.P., Cao, C., Tessema, M. et al. Interaction and functional analyses of human VPS34/p150 phosphatidylinositol 3-kinase complex with Rab7 Methods Enzymol., 403 (2005),pp. 628-649
    [68] Sun, Q., Fan, W., Chen, K. et al. Identification of Barkor as a mammalian autophagy-specific factor for Beclin 1 and class III phosphatidylinositol 3-kinase Proc. Natl. Acad. Sci. USA, 105 (2008),pp. 19211-19216
    [69] Thoresen, S.B., Pedersen, N.M., Liestol, K. et al. A phosphatidylinositol 3-kinase class III sub-complex containing VPS15, VPS34, Beclin 1, UVRAG and BIF-1 regulates cytokinesis and degradative endocytic traffic Exp. Cell Res., 316 (2010),pp. 3368-3378
    [70] Towler, D.A., Gordon, J.I., Adams, S.P. et al. The biology and enzymology of eukaryotic protein acylation Annu. Rev. Biochem., 57 (1988),pp. 69-99
    [71] Volinia, S., Dhand, R., Vanhaesebroeck, B. et al. A human phosphatidylinositol 3-kinase complex related to the yeast Vps34p-Vps15p protein sorting system EMBO J., 14 (1995),pp. 3339-3348
    [72] Walhout, A.J., Temple, G.F., Brasch, M.A. et al. GATEWAY recombinational cloning: application to the cloning of large numbers of open reading frames or ORFeomes Methods Enzymol., 328 (2000),pp. 575-592
    [73] Weigel, D., Glazebrook, J.
    [74] Welters, P., Takegawa, K., Emr, S.D. et al. Proc. Natl. Acad. Sci. USA, 91 (1994),pp. 11398-11402
    [75] Wu, R., Li, S., He, S. et al. Plant Cell, 23 (2011),pp. 3392-3411
    [76] Wu, Y., Yan, J., Zhang, R. et al. Plant Cell, 22 (2010),pp. 3745-3763
    [77] Xing, S., Qin, G., Shi, Y. et al. J. Integr. Plant Biol., 49 (2007),pp. 368-381
    [78] Xu, N., Gao, X.Q., Zhao, X.Y. et al. Plant Mol. Biol., 77 (2011),pp. 251-260
    [79] Yang, X.Y., Li, J.G., Pei, M. et al. Plant Cell Rep., 26 (2007),pp. 219-228
    [80] Zhang, H., Qu, X., Bao, C. et al. Plant Cell, 22 (2010),pp. 2749-2767
    [81] Zhang, Y., Li, S., Zhou, L.Z. et al. Plant J., 68 (2011),pp. 1081-1092
  • 加载中
计量
  • 文章访问数:  76
  • HTML全文浏览量:  21
  • PDF下载量:  0
  • 被引次数: 0
出版历程
  • 收稿日期:  2011-12-29
  • 录用日期:  2012-01-05
  • 修回日期:  2012-01-04
  • 网络出版日期:  2012-01-13
  • 刊出日期:  2012-02-20

目录

    /

    返回文章
    返回