Perinuclear and nuclear envelope localizations of Arabidopsis Ran proteins
暂无分享,去创建一个
[1] Y. Kodama,et al. Interaction between methyl CpG-binding protein and ran GTPase during cell division in tobacco cultured cells. , 2006, Annals of botany.
[2] Karsten Weis,et al. Analysis of a RanGTP-regulated gradient in mitotic somatic cells , 2006, Nature.
[3] S. Ramachandran,et al. Comparative and evolutionary analysis of genes encoding small GTPases and their activating proteins in eukaryotic genomes. , 2006, Physiological genomics.
[4] D. Verma,et al. The ins and outs in membrane dynamics: tubulation and vesiculation. , 2005, Trends in plant science.
[5] I. Meier,et al. Plant-specific mitotic targeting of RanGAP requires a functional WPP domain. , 2005, The Plant journal : for cell and molecular biology.
[6] I. Meier,et al. Arabidopsis WPP-Domain Proteins Are Developmentally Associated with the Nuclear Envelope and Promote Cell Divisionw⃞ , 2004, The Plant Cell Online.
[7] D. Verma,et al. A unified nomenclature for Arabidopsis dynamin-related large GTPases based on homology and possible functions , 2003, Plant Molecular Biology.
[8] Zhenbiao Yang,et al. Analysis of the Small GTPase Gene Superfamily of Arabidopsis1 , 2003, Plant Physiology.
[9] S. Bednarek,et al. Membrane Trafficking During Plant Cytokinesis , 2002, Traffic.
[10] A. Wilde,et al. Ran Localizes around the Microtubule Spindle In Vivo during Mitosis in Drosophila Embryos , 2002, Current Biology.
[11] F. Nagy,et al. Plant RanGAPs are localized at the nuclear envelope in interphase and associated with microtubules in mitotic cells. , 2002, The Plant journal : for cell and molecular biology.
[12] Makoto Fukuda,et al. The GTPase Ran Regulates Chromosome Positioning and Nuclear Envelope Assembly In Vivo , 2002, Current Biology.
[13] U. Kutay,et al. Role of Importin-β in the Control of Nuclear Envelope Assembly by Ran , 2002, Current Biology.
[14] I. Meier,et al. A domain unique to plant RanGAP is responsible for its targeting to the plant nuclear rim , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[15] D. Verma,et al. CYTOKINESIS AND BUILDING OF THE CELL PLATE IN PLANTS. , 2001, Annual review of plant physiology and plant molecular biology.
[16] D. Verma,et al. A Novel UDP-Glucose Transferase Is Part of the Callose Synthase Complex and Interacts with Phragmoplastin at the Forming Cell Plate , 2001, Plant Cell.
[17] D. Verma,et al. A Cell Plate–Specific Callose Synthase and Its Interaction with Phragmoplastin , 2001, Plant Cell.
[18] M. Dasso. Running on Ran Nuclear Transport and the Mitotic Spindle , 2001, Cell.
[19] P. Clarke,et al. Roles of Ran–GTP and Ran–GDP in precursor vesicle recruitment and fusion during nuclear envelope assembly in a human cell-free system , 2001, Current Biology.
[20] I. Meier,et al. A novel link between ran signal transduction and nuclear envelope proteins in plants. , 2000, Plant physiology.
[21] P. Clarke,et al. Chromatin-independent nuclear envelope assembly induced by Ran GTPase in Xenopus egg extracts. , 2000, Science.
[22] D. Verma,et al. Phragmoplastin Polymerizes into Spiral Coiled Structures via Intermolecular Interaction of Two Self-assembly Domains* , 2000, The Journal of Biological Chemistry.
[23] Y. Hiraoka,et al. Live fluorescence imaging reveals early recruitment of emerin, LBR, RanBP2, and Nup153 to reforming functional nuclear envelopes. , 2000, Journal of cell science.
[24] J. Kahana,et al. Beyond Nuclear Transport: Ran-Gtp as a Determinant of Spindle Assembly , 1999 .
[25] P. Enarson,et al. Function and assembly of nuclear pore complex proteins. , 1999, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[26] K. Bodoor,et al. Sequential recruitment of NPC proteins to the nuclear periphery at the end of mitosis. , 1999, Journal of cell science.
[27] I. Vetter,et al. The crystal structure of rna1p: a new fold for a GTPase-activating protein. , 1999, Molecular cell.
[28] Yixian Zheng,et al. Stimulation of microtubule aster formation and spindle assembly by the small GTPase Ran. , 1999, Science.
[29] R. Brent,et al. Interaction Trap/Two‐Hybrid System to Identify Interacting Proteins , 1999, Current protocols in molecular biology.
[30] Andrew Smith. Genome sequence of the nematode C-elegans: A platform for investigating biology , 1998 .
[31] G. Blobel,et al. SUMO-1 Modification and Its Role in Targeting the Ran GTPase-activating Protein, RanGAP1, to the Nuclear Pore Complex , 1998, The Journal of cell biology.
[32] Jeno Gyuris,et al. Interaction Trap/Two‐Hybrid System to Identify Interacting Proteins , 1997, Current protocols in protein science.
[33] K. Wilson,et al. Nuclear envelope assembly in Xenopus extracts visualized by scanning EM reveals a transport-dependent 'envelope smoothing' event. , 1997, Journal of cell science.
[34] D. Verma,et al. Dynamics of phragmoplastin in living cells during cell plate formation and uncoupling of cell elongation from the plane of cell division. , 1997, The Plant cell.
[35] I. Macara,et al. Mutations within the Ran/TC4 GTPase , 1996, The Journal of Biological Chemistry.
[36] G. Blobel,et al. A novel ubiquitin-like modification modulates the partitioning of the Ran-GTPase-activating protein RanGAP1 between the cytosol and the nuclear pore complex , 1996, The Journal of cell biology.
[37] D. Verma,et al. Phragmoplastin, a dynamin‐like protein associated with cell plate formation in plants. , 1996, The EMBO journal.
[38] T. Giddings,et al. Cytokinesis in tobacco BY-2 and root tip cells: a new model of cell plate formation in higher plants , 1995, The Journal of cell biology.
[39] I. Macara,et al. The C Terminus of the Nuclear RAN/TC4 GTPase Stabilizes the GDP-bound State and Mediates Interactions with RCC1, RAN-GAP, and HTF9A/RANBP1 (*) , 1995, The Journal of Biological Chemistry.
[40] A. Willems,et al. Studies on the transformation of intact yeast cells by the LiAc/SS‐DNA/PEG procedure , 1995, Yeast.
[41] K. Harter,et al. Phenotype of the fission yeast cell cycle regulatory mutant pim1-46 is suppressed by a tobacco cDNA encoding a small, Ran-like GTP-binding protein. , 1994, The Plant journal : for cell and molecular biology.
[42] W. Gruissem,et al. A small nuclear GTP-binding protein from tomato suppresses a Schizosaccharomyces pombe cell-cycle mutant. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[43] G. Blobel,et al. The GTP-binding protein Ran/TC4 is required for protein import into the nucleus , 1993, Nature.
[44] D. Goldfarb,et al. Regulation of RNA processing and transport by a nuclear guanine nucleotide release protein and members of the Ras superfamily. , 1993, The EMBO journal.
[45] K. Weber,et al. A functional homologue of the RNA1 gene product in Schizosaccharomyces pombe: purification, biochemical characterization, and identification of a leucine-rich repeat motif. , 1993, Molecular biology of the cell.
[46] P. D’Eustachio,et al. Ran/TC4: a small nuclear GTP-binding protein that regulates DNA synthesis , 1993, The Journal of cell biology.
[47] J. Dixon,et al. Eukaryotic proteins expressed in Escherichia coli: an improved thrombin cleavage and purification procedure of fusion proteins with glutathione S-transferase. , 1991, Analytical biochemistry.
[48] A. Hopper,et al. The yeast RNA1 gene product necessary for RNA processing is located in the cytosol and apparently excluded from the nucleus , 1990, The Journal of cell biology.
[49] P. D’Eustachio,et al. Characterization of four novel ras-like genes expressed in a human teratocarcinoma cell line , 1990, Molecular and cellular biology.
[50] M. Ohtsubo,et al. The RCC1 protein, a regulator for the onset of chromosome condensation locates in the nucleus and binds to DNA , 1989, The Journal of cell biology.
[51] I. Meier,et al. Plant nuclear envelope proteins. , 2004, Symposia of the Society for Experimental Biology.
[52] U. Kutay,et al. Role of importin-beta in the control of nuclear envelope assembly by Ran. , 2002, Current biology : CB.
[53] U. Kutay,et al. Transport between the cell nucleus and the cytoplasm. , 1999, Annual review of cell and developmental biology.
[54] I. Mattaj,et al. Nucleocytoplasmic transport: the soluble phase. , 1998, Annual review of biochemistry.
[55] J. Berg. Genome sequence of the nematode C. elegans: a platform for investigating biology. , 1998, Science.
[56] F. Nagy,et al. Characterization of proteins that interact with the GTP-bound form of the regulatory GTPase Ran in Arabidopsis. , 1997, The Plant journal : for cell and molecular biology.
[57] K. Kaibuchi,et al. Small GTP-binding proteins. , 1992, International review of cytology.
[58] M. Mclean,et al. The Ran decathlon : multiple roles of Ran , 2022 .