SECRET AGENT and SPINDLY have overlapping roles in the development of Arabidopsis thaliana L. Heyn.

Journal of Experimental Botany - Tập 57 Số 4 - Trang 865-875 - 2006
Lynn M. Hartweck, Ruth K. Genger1, William M. Gray2, Neil E. Olszewski2
1Department of Plant Pathology, University of Wisconsin-Madison, 1630 Linden Drive, Madison, WI 53706, USA
2Department of Plant Biology, University of Minnesota, 250 Biological Sciences Center, 1445 Gortner Ave., St Paul, MN 55108, USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

Arnold CS, Johnson GV, Cole RN, Dong DL, Lee M, Hart GW. 1996. The microtubule-associated protein tau is extensively modified with O-linked N-acetylglucosamine. Journal of Biological Chemistry271,28741–28744.

Bennett SRM, Alvarez J, Bossinger G, Smyth DR. 1995. Morphogenesis in pinoid mutants of Arabidopsis thaliana. The Plant Journal8,505–520.

Buse MG, Robinson KA, Marshall BA, Hresko RC, Mueckler MM. 2002. Enhanced O-GlcNAc protein modification is associated with insulin resistance in GLUT1-overexpressing muscles. American Journal of Physiology, Endocrinology and Metabolism283,E241–250.

Chen D, Juárez S, Hartweck L, Alamillo JM, Simón-Mateo C, Pérez JJ, Fernández-Fernández MR, Olszewski NE, García JA. 2005. Identification of SECRET AGENT as the O-GlcNAc TRANSFERASE that participates in plum pox virus infection. Journal of Virology79,9381–9387.

Cheng X, Hart GW. 2001. Alternative O-glycosylation/O-phosphorylation of serine-16 in murine estrogen receptor beta: post-translational regulation of turnover and transactivation activity. Journal of Biological Chemistry276,10570–10575.

Chou TY, Hart GW, Dang CV. 1995. c-Myc is glycosylated at threonine 58, a known phosphorylation site and a mutational hot spot in lymphomas. Journal of Biological Chemistry270,18961–18965.

Christensen SK, Dagenais N, Chory J, Weigel D. 2000. Regulation of auxin response by the protein kinase PINOID. Cell100,469–478.

Comer FI, Vosseller K, Wells L, Accavitti MA, Hart GW. 2001. Characterization of a mouse monoclonal antibody specific for O-linked N-acetylglucosamine. Analytical Biochemistry293,169–177.

Daniels MB, Turner PC, Clearly WG, Sawczyc MK. 1984. Isolation of mutants of Xanthomonas campestris pv. campestris showing altered pathogenicity. Journal of General Microbiology130,2447–2455.

Filardo FF, Swain SM. 2003. SPYing on GA signaling and plant development. Journal of Plant Growth Regulation22,163–175.

Fu X, Harberd NP. 2003. Auxin promotes Arabidopsis root growth by modulating gibberellin response. Nature421,740–743.

Galweiler L, Guan C, Muller A, Wisman E, Mendgen K, Yephremov A, Palme K. 1998. Regulation of polar auxin transport by AtPIN1 in Arabidopsis vascular tissue. Science282,2226–2230.

Gao Y, Wells L, Comer FI, Parker GJ, Hart GW. 2001. Dynamic O-glycosylation of nuclear and cytosolic proteins: cloning and characterization of a neutral, cytosolic β-N-acetylglucosaminidase from human brain. Journal of Biological Chemistry276,9838–9845.

Gazzarrini S, Tsuchiya Y, Lumba S, Okamoto M, McCourt P. 2004. The transcription factor FUSCA3 controls developmental timing in Arabidopsis through the hormones gibberellin and abscisic acid. Developmental Cell7,373–385.

Greenboim-Wainberg Y, Maymon I, Borochov R, Alvarez J, Olszewski N, Ori N, Eshed Y, Weiss D. 2005. Cross talk between gibberellin and cytokinin: the Arabidopsis GA response inhibitor SPINDLY plays a positive role in cytokinin signaling. The Plant Cell17,92–102.

Guinez C, Morelle W, Michalski JC, Lefebvre T. 2005. O-GlcNAc glycosylation: a signal for the nuclear transport of cytosolic proteins? International Journal of Biochemistry and Cell Biology37,765–774.

Haltiwanger RS, Holt GD, Hart GW. 1990. Enzymatic addition of O-GlcNAc to nuclear and cytoplasmic proteins. Identification of a uridine diphospho-N-acetylglucosamine:peptide β-N-acetylglucosaminyltransferase. Journal of Biological Chemistry265,2563–2568.

Hardtke CS, Berleth T. 1998. The Arabidopsis gene MONOPTEROS encodes a transcription factor mediating embryo axis formation and vascular development. European Molecular Biology Organization Journal17,1405–1411.

Hartweck LM, Scott CL, Olszewski NE. 2002. Two O-linked N-acetylglucosamine transferase genes of Arabidopsis thaliana L. Heynh. have overlapping functions necessary for gamete and seed development. Genetics161,1279–1291.

Hay A, Kaur H, Phillips A, Hedden P, Hake S, Tsiantis M. 2002. The gibberellin pathway mediates KNOTTED1-type homeobox function in plants with different body plans. Current Biology12,1557–1565.

Izhaki A, Swain SM, Tseng T-S, Borochov A, Olszewski NE, Weiss D. 2001. The role of SPY and its TPR domain in the regulation of gibberellin action throughout the life cycle of Petunia hybrida plants. The Plant Journal28,1–11.

Jacobsen SE, Binkowski KA, Olszewski NE. 1996. SPINDLY, a tetratricopeptide repeat protein involved in gibberellin signal transduction in Arabidopsis. Proceedings of the National Academy of Sciences, USA93,9292–9296.

Jacobsen SE, Olszewski NE. 1993. Mutations at the SPINDLY locus of Arabidopsis alter gibberellin signal transduction. The Plant Cell5,887–896.

Jacobsen SE, Olszewski NE. 1996. Gibberellins regulate the abundance of RNAs with sequence similarity to proteinase inhibitors, dioxygenases and dehydrogenases. Planta198,78–86.

Kelly WG, Dahmus ME, Hart GW. 1993. RNA polymerase II is a glycoprotein. Modification of the COOH-terminal domain by O-GlcNAc. Journal of Biological Chemistry268,10416–10424.

Khidekel N, Ficarro SB, Peters EC, Hsieh-Wilson LC. 2004. Exploring the O-GlcNAc proteome: direct identification of O-GlcNAc-modified proteins from the brain. Proceedings of the National Academy of Sciences, USA101,13132–13137.

Kirch T, Simon R, Grunewald M, Werr W. 2003. The DORNRÖSCHEN/ENHANCER OF SHOOT REGENERATION1 gene of Arabidopsis acts in the control of meristem cell fate and lateral organ development. The Plant Cell15,694–705.

Koornneef M, van der Veen JH. 1980. Induction and analysis of gibberellin-sensitive mutants in Arabidopsis thaliana (L.) Heynh. Theoretical and Applied Genetics58,257–263.

Lynn K, Fernandez A, Aida M, Sedbrook J, Tasaka M, Masson P, Barton MK. 1999. The PINHEAD/ZWILLE gene acts pleiotropically in Arabidopsis development and has overlapping functions with the ARGONAUTE1 gene. Development126,469–481.

O'Donnell N, Zachara NE, Hart GW, Marth JD. 2004. Ogt-dependent X-chromosome-linked protein glycosylation is a requisite modification in somatic cell function and embryo viability. Molecular and Cellular Biology24,1680–1690.

O'Neill DP, Ross JJ. 2002. Auxin regulation of the gibberellin pathway in pea. Plant Physiology130,1974–1982.

Olszewski N, Sun T-P, Gubler F. 2002. Gibberellin signaling: biosynthesis, catabolism, and response pathways. The Plant Cell14,S61–S80.

Przemeck GK, Mattsson J, Hardtke CS, Sung ZR, Berleth T. 1996. Studies on the role of the Arabidopsis gene MONOPTEROS in vascular development and plant cell axialization. Planta200,229–237.

Reinhardt D, Mandel T, Kuhlemeier C. 2000. Auxin regulates the initiation and radial position of plant lateral organs. The Plant Cell12,507–518.

Robertson M, Swain SM, Chandler PM, Olszewski NE. 1998. Identification of a negative regulator of gibberellin action, HvSPY, in barley. The Plant Cell10,995–1007.

Sakamoto T, Miura K, Itoh H, et al. 2004. An overview of gibberellin metabolism enzyme genes and their related mutants in rice. Plant Physiology134,1642–1653.

Sambrook J, Fritsch EF, Maniatis T. 1989. Molecular cloning: a laboratory manual, 2nd edn. Cold Spring Harbor, NY: Cold Spring Harbor Laboratory Press.

Shafi R, Iyer SP, Ellies LG, O'Donnell N, Marek KW, Chui D, Hart GW, Marth JD. 2000. The O-GlcNAc transferase gene resides on the X chromosome and is essential for embryonic stem cell viability and mouse ontogeny. Proceedings of the National Academy of Sciences, USA97,5735–5739.

Silverstone AL, Chang C-W, Krol E, Sun T-P. 1997 a. Developmental regulation of the gibberellin biosynthetic gene GA1 in Arabidopsis thaliana. The Plant Journal12,9–19.

Silverstone AL, Mak PYA, Casamitjana Martínez E, Sun T-P. 1997 b. The new RGA locus encodes a negative regulator of gibberellin response in Arabidopsis thaliana. Genetics146,1087–1099.

Snedecor GW, Cochran WG. 1980. Statistical methods, 7th edn. Ames, Iowa: Iowa State University Press.

Sothern RB, Tseng TS, Orcutt SL, Olszewski NE, Koukkari WL. 2002. GIGANTEA and SPINDLY genes linked to the clock pathway that controls circadian characteristics of transpiration in Arabidopsis. Chronobiology International19,1005–1022.

Sun T-P, Kamiya Y. 1994. The Arabidopsis GA1 locus encodes the cyclase ent-kaurene synthetase A of gibberellin biosynthesis. The Plant Cell6,1509–1518.

Sun TP, Gubler F. 2004. Molecular mechanism of gibberellin signaling in plants. Annual Review of Plant Biology55,197–223.

Swain SM, Muller AJ, Singh DP. 2004. The gar2 and rga alleles increase the growth of gibberellin-deficient pollen tubes in Arabidopsis. Plant Physiology134,694–705.

Swain SM, Singh DP. 2005. Tall tales from sly dwarves: novel functions of gibberellins in plant development. Trends in Plant Science10,123–129.

Swain SM, Tseng T-S, Thornton TM, Gopalraj M, Olszewski NE. 2002. SPINDLY is a nuclear-localized repressor of gibberellin signal transduction expressed throughout the plant. Plant Physiology129,605–615.

Swain SM, Tseng TS, Olszewski NE. 2001. Altered expression of SPINDLY affects gibberellin response and plant development. Plant Physiology126,1174–1185.

Tanaka-Ueguchi M, Itoh H, Oyama N, Koshioka M, Matsuoka M. 1998. Over-expression of a tobacco homeobox gene, NTH15, decreases the expression of a gibberellin biosynthetic gene encoding GA 20-oxidase. The Plant Journal15,391–400.

Telfer A, Bollman KM, Poethig RS. 1997. Phase change and the regulation of trichome distribution in Arabidopsis thaliana. Development124,645–654.

Thornton TM, Swain SM, Olszewski NE. 1999. Gibberellin signal transduction presents … the SPY who O-GlcNAc'd me. Trends in Plant Science4,424–428.

Tseng TS. 2001. Functional analyses of the tetratricopeptide repeat domain of SPINDLY. IV. Arabidopsis SPINDLY interacts with GIGANTEA: implication for the interrelationship of gibberellin and light signaling pathways. PhD thesis, University of Minnesota, USA, 78–106.

Tseng TS, Salome PA, McClung CR, Olszewski NE. 2004. SPINDLY and GIGANTEA interact and act in Arabidopsis thaliana pathways involved in light responses, flowering, and rhythms in cotyledon movements. The Plant Cell16,1550–1563.

Vernoux T, Kronenberger J, Grandjean O, Laufs P, Traas J. 2000. PIN-FORMED 1 regulates cell fate at the periphery of the shoot apical meristem. Development127,5157–5165.

Wells L, Hart GW. 2003. O-GlcNAc turns twenty: functional implications for post-translational modification of nuclear and cytosolic proteins with a sugar. Federation of European Biochemical Societies Letters546,154–158.

Wells L, Kreppel LK, Comer FI, Wadzinski BE, Hart GW. 2004. O-GlcNAc transferase is in a functional complex with protein phosphatase 1 catalytic subunits. Journal of Biological Chemistry279,38466–38470.

Wells L, Vosseller K, Hart GW. 2003. A role for N-acetylglucosamine as a nutrient sensor and mediator of insulin resistance. Cellular and Molecular Life Sciences60,222–228.

Whalen MC, Innes RW, Bent AF, Staskawicz BJ. 1991. Identification of Pseudomonas syringae pathogens of Arabidopsis and a bacterial locus determining avirulence on both Arabidopsis and soybean. The Plant Cell3,49–59.

Wilson RN, Somerville CR. 1995. Phenotypic suppression of the gibberellin-insensitive mutant (gai) of Arabidopsis. Plant Physiology108,495–502.

Wolbang CM, Ross JJ. 2001. Auxin promotes gibberellin biosynthesis in decapitated tobacco plants. Planta214,153–157.

Yang T, Davies PJ, Reid JB. 1996. Genetic dissection of the relative roles of auxin and gibberellin in the regulation of stem elongation in intact light-grown peas. Plant Physiology110,1029–1034.

Zhang F, Su K, Yang X, Bowe DB, Paterson AJ, Kudlow JE. 2003. O-GlcNAc modification is an endogenous inhibitor of the proteasome. Cell115,715–725.