|
| [Seite 84↓] |
Alberts B, Bray D, Lewis J, Raff M, Roberts K, Watson JD: Molekularbiologie der Zelle. 3. Auflage Weinheim, New York, Basel, Cambridge, Tokyo, VCH, 1995
Anderson CW, Straus JW, Dudock BS: Preparation of a cell-free protein-synthesizing system from wheat germ. Methods Enzymol. . 1983, 101: S.635-644
Avni D, Shama S, Loreni F, Meyuhas O: Vertebrate mRNAs with a 5'-terminal pyrimidine tract are candidates for translational repression in quiescent cells: characterization of the translational cis-regulatory element. Mol. Cell. Biol. . 1994, 14: S.3822-3833
Baudet C, Perret E, Delpech B, Kaghad M, Brachet P, Wion D, Caput D: Differentially expressed genes in C6.9 glioma cells during vitamin D-induced cell death programm. Cell Death Differ.. 1998, 5: S.116-125
Benndorf R, Nürnberg P, Bielka H: Growth phase-dependent proteins of the Ehrlich Ascites Tumor analyzed by one- and two-dimensional electrophoresis . Exp. Cell Res.. 1988, 174: S.130-138
Bhisutthibhan J, Pan XQ, Hossler PA, Walker DJ, Yowell CA, Carlton J, Dame JB, Meshnick SR: The Plasmodium falciparum translationally controlled tumor protein and its reaction with the antimalarial drug artemisinin. J. Biol. Chem.. 1998, 273: S.16192-16198
Biberman Y, Meyuhas O: TOP mRNAs are translationally inhibited by a titratable repressor in both wheat germ extract and reticulocyte lysate. FEBS Lett. . 1999, 456: S.357-360
Böhm H, Benndorf R, Gaestel M, Gross B, Nürnberg P, Kraft R, Otto A, Bielka H: The growth-related protein p23 of the Ehrlich Ascites Tumor: Translational control, cloning and primary structure. Biochem. Int. . 1989, 19: S.277-286
Böhm H, Gross B, Gaestel M, Bommer UA, Ryffel G, Bielka H: The 5'-untranslated region of p23 mRNA from the Ehrlich Ascites Tumor is involved in translation control of the growth related protein p23. Biomed. Biochem. Acta. 1991, 50: S.1193-1203
Bommer UA, Borovjagin AV, Greagg MA, Jeffrey IW, Russell P, Laing KG, Lee M, Clemens MJ: The mRNA of the translationally controlled tumor protein p23/TCTP is a highly structured RNA which activates the dsRNA-dependent protein kinase PKR. RNA. 2002, 8: S.1-19
|
|
Bommer UA, Lazaris-Karatzas A, De Benedetti A, Nürnberg P, Benndorf R, Bielka H, Sonenberg N: Translational regulation of the mammalian growth-related protein p23: involvement of eIF-4E phosphorylation. Cell. Mol. Biol. Res.. 1994, 40: S.633-641
Bonnet C, Perret E, Dumont X, Picard A, Caput D, Lenaers G: Identification and transcription control of fission yeast genes repressed by an ammonium starvation growth arrest. Yeast. 2000, 16: S.23-33
Caput D, Beutler B, Hartog K, Thayer R, Brown-Shimer S, Cerami A: Identification of a common nucleotide sequence in the 3'-untranslated region of mRNA molecules specifying inflammatory mediators. Proc. Natl. Acad. Sci. USA. 1986, 83: S.1670-1674
Cayanis E et al.: High-resolution YAC-cosmid-STS map of human chromosome 13. Genomics. 1998, 47: S.26-43
Chitpatima ST, Brawerman G: Shifts in configuration of the 5'-noncoding region of a mouse messenger RNA under translational control. J. Biol. Chem.. 1988, 263: S.7164-7169
Chitpatima ST, Makrides S, Bandyopadhyay R, Brawerman G: Nucleotide sequence of a major messenger RNA for a 21 kilodalton polypeptide that is under translational control in mouse tumor cells. Nucl. Acids Res.. 1988, 16: S.2350
Chung S, Kim M, Choi W, Chung J, Lee K: Expression of translationally controlled tumor protein mRNA in human colon cancer. Cancer Lett.. 2000, 156: S.185-190
Clemens MJ, Bommer UA: Translational control: the cancer connection. Int. J. Biochem. Cell Biol.. 1999, 31: S.1-23
Conne B, Stutz A, Vassalli JD: The 3' untranslated region of messenger RNA: A molecular 'hotspot' for pathology. Nat. Med. . 2000, 6: S.637-641
Dasso MC, Jackson RJ: On the fidelity of mRNA translation in the nuclease-treated rabbit reticulocyte lysate system. Nucleic Acids Res. . 1989, 17: S.3129-3144
Dennis PB, Fumagalli S, Thomas G: Target of rapamycin (TOR): balancing the opposing forces of protein synthesis and degradation. Curr. Opin. Genet. Dev.. 1999, 9: S.49-54
Descheemaeker KA, Wyns S, Nelles L, AuwerX J, Ny T, Collen D: Interaction of AP-1, AP-2 and SP-1-like proteins with two distinct sites in the upstream regulatory region of the plasminogen activator inhibitor-1 gene mediates the the phorbol 12-myristate 13-acetate response. J. Biol. Chem.. 1992, 267: S.15086-15091
|
|
Dever TE: Gene-specific regulation by general translation factors. Cell. 2002, 108: S.545-556
Dreyfuss G, Kim VN, Kataoka N: Messenger-RNA-binding proteins and the messages they carry. Nat. Rev. Mol. Cell Biol.. 2002, 3: S.195-205
Faisst S, Meyer S: Compilation of vertebrate-encoded transcription factors. Nucleic Acids Res.. 1992, 20: S.3-26
Fisher TC, Milner AE, Gregory CD, Jackman AL, Aherne GW, Hartley JA, Dive C, Hickman JA: bcl-2 modulation of apoptosis induced by anticancer drugs: resistance to thymidylate stress is independent of classical resistance pathways. Cancer Res. . 1993, 53: S.3321-3326
Frevel M, Bakheet T, Silva AM, Hissong JG, Khabar K, Williams B: p38 mitogen-activated protein kinase-dependent and -independent signaling of mRNA stability of AU-rich element containing transcripts. Mol. Cell. Biol.. 2003, 23: S.425-436
Gachet Y, Tournier S, Lee M, Lazaris-Karatzas A, Poulton T, Bommer UA: The growth-related, translationally controlled protein p23 has properties of a tubulin binding protein and associates transiently with microtubules during the cell cycle. J. Cell Science. 1999, 112: S.1257-1271
Gehring NH, Frede U, Neu-Yilik G, Hundsdoerfer P, Vetter B, Hentze MW, Kulozik AE: Increased efficiency of mRNA 3' end formation: a new genetic mechanism contributing to hereditary thrombophilia. Nat. Genet. . 2001, 28: S.389-392
Goh KC, de Veer MJ, Williams B: The protein kinase PKR is required for p38 MAPK activation and the innate immune response to bacterial endotoxin. EMBO J. 2000, 19: S.4292-4297
Gouble A, Morello D: Synchronous and regulated expression of two AU-binding proteins, AUF1 and HuR, throughout murine development. Oncogene. 2000, 19: S.5377-5384
Gross B, Gaestel M, Böhm H, Bielka H: cDNA sequence coding for a translationally controlled human tumor protein. Nucl. Acids Res.. 1989, 17: S.8367
Grzybowska EA, Wilczynska A, Siedlecki JA: Regulatory functions of 3'UTRs. Biochem. Biophys. Res. Commun. . 2001, 288: S.291-295
Guhaniyogi J, Brewer G: Regulation of mRNA stability in mammalian cells. Gene. 2001, 265: S.11-23
|
|
Guillaume E, Pineau C, Evrard B, Dupaix A, Moertz E, Sanchez JC, Hichstrasser DF, Jegou B: Cellular distrubution of translationally controlled tumor protein in rat and human testes. Proteomics. 2001, 1: S.880-889
Haghighat NG, Ruben L: Purification of novel calcium binding proteins from Trypanosoma brucei: properties of 22-. 24- and 38-kilodalton proteins. Mol. Biochem. Parasit.. 1992, 51: S.99-110
Hentze MW: Translational regulation: versatile mechanisms for metabolic and developmental control. Curr. Opin. Cell Biol. . 1995, 7: S.393-398
Hentze MW, Kuhn LC: Molecular control of vertebrate iron metabolism: mRNA-based regulatory circuits operated by iron, nitric oxide, and oxidative stress. Proc. Natl. Acad. Sci. U S A. 1996, 93: S.8175-8182
Hidalgo M, Rowinsky EK: The rapamycin-sensitive signal transduction pathway as a target for cancer therapy. Oncogene. 2000, 19: S.6680-6686
Jansen RP: RNA-cytoskeletal associations. FASEB J.. 1999, 13: S.455-466
Jefferies HB, Fumagalli S, Dennis PB, Reinhard C, Pearson RB, Thomas G: Rapamycin suppresses 5'TOP mRNA translation through inhibition of p70s6k. EMBO J.. 1997, 16: S.3693-3704
Jefferies HB, Reinhard C, Kozma SC, Thomas G: Rapamycin selectively represses translation of the "polypyrimidine tract" mRNA family. Proc. Natl. Acad. Sci. USA. 1994, 91: S.4441-4445
Kalachikov S et al.: Cloning and gene mapping of 13q14 region deleted in chronic lymphocytic leukemia. Genomics. 1997, 42: S.369-377
Kang HS, Lee MJ, Song H, Han SH, Kim YM, Im JY, Choi I: Molecular identification of IgE-dependent histamine-releasing factor as a B cell growth factor. J. Immunol.. 2001, 166: S.6545-6554
Kern MA, Helmbach H, Artuc M, Karmann D, Jurgovsky K, Schadendorf D: Human melanoma cell lines selected in vitro displaying various levels of drug resistance against cisplatin, fotemustine, vindesine or etoposide: modulation of proto-oncogene expression. Anticancer Res.. 1997, 17: S.4359-4370
Kim M, Jung Y, Lee K, Kim C: Identification of the calcium binding sites in translationally controlled tumor protein. Arch. Pharm. Res.. 2000, 23: S.633-636
|
|
Kim SH, Cairns N, Fountoulakisc M, Lubec G : Decreased brain histamine-releasing factor protein in patients with Down syndrome and Alzheimer's disease. Neurosci. Lett.. 2001, 300: S.41-44
Kloc M, Zearfoss NR, Etkin LD: Mechanisms of subcellular mRNA localization. Cell. 2002, 108: S.533-544
Konarska MM, Sharp PA: Electrophoretic separation of complexes involved in the splicing of precursors to mRNA. Cell. 1986, 46: S.845-855
Kramer M und Coen DM: Current protocols in molecular biology. John Wiley & Sons, Inc., 1995
Lachance P, Miron M, Raught B, Sonenberg N, Lasko P: Phosphorylation of eukaryotic translation factor 4E is critical for growth. Mol. Cell. Biol.. 2002, 22: S.1656-1663
Lage H, Christmann M, Kern MA, Dietel M, Pick M, Kaina B, Schadendorf D: Expression of DNA repair proteins hMSH2, hMSH6, hMLH1, O6-methylguanine-DNA methyltransferase and N-methylpurine-DNA glycosylase in melanoma cells with acquired drug resistance. Int. J. Cancer . 1999, 80: S.744-750
Lander ES et al.: Initial sequencing and analysis of the human genome. Nature . 2001, 409: S.860-921
Law BK, Chytil A, Dumont N, Hamilton EG, Waltner-Law ME, Aakre ME, Covington C, Moses HL: Rapamycin potentiates transforming growth factor beta-induced growth arrest in nontransformed, oncogene-transformed, and human cancer cells. Mol. Cell. Biol. . 2002, 22: S.8184-8198
Leibold EA, Munro HN: Cytoplasmic protein binds in vitro to a highly conserved sequence in the 5' untranslated region of ferritin heavy- and light-subunit mRNAs. Proc. Natl. Acad. Sci. USA. 1988, 85: S.2171-2175
Li F, Zhang D, Fujise K: Characterization of fortilin, a novel antiapoptotic protein. J. Biol. Chem. . 2001, 276: S.47542-47549
MacDonald S, Bhisutthibhan J, Shapiro TA, Rogerson SJ, Taylor TE, Tembo M, Langdon JM, Meshnick SR: Immune mimicry in malaria: Plasmodium falciparum secretes a functional histamine-releasing factor homolog in vitro and in vivo. Proc. Natl. Acad. Sci. USA. 2001, 98: S.10829-10832
|
|
MacDonald S, Rafner T, Langdon J, Lichtenstein L: Molecular identification of an IgE-dependent histamine-releasing factor. Science. 1995, 269: S.688-690
Meyuhas O: Synthesis of the translational apparatus is regulated at the translational level. Eur. J. Biochem.. 2000, 267: S.6321-6330
Mighell AJ, Smith NR, Robinson PA, Markham AF: Vertebrate pseudogenes. FEBS Lett.. 2000, 468: S.109-114
Misquitta CM, Iyer VR, Werstiuk ES, Grover AK: The role of 3'-untranslated region (3'-UTR) mediated mRNA stability in cardiovascular pathophysiology. Mol. Cell. Biochem.. 2001, 224: S.53-67
Moler EJ, Chow ML, Mian IS: Analysis of molecular data using generative and discriminative methods. Physiol. Genomics. 2000, 18: S.109-126
Morris DR, Kakegawa T, Kaspar RL, White MW: Polypyrimidine tracts and their binding proteins: Regulatory sites for posttransciptional modulation of gene expression. Biochemistry. 1993, 32: S.2931-2937
Nielson HV, Johnson AH, Sanchez JC, Hochstrasser DF, Schiotz PO: Identification of a basophil leukocyte interleukin-3-regulated protein that is identical to IgE-dependent histamine-releasing factor . Allergy. 1998, 53: S.642-652
Oikawa K, Ohbayashi T, Mimura J, Fujii-Kuriyama Y, Teshima S, Rokutan K, Mukai K, Kuroda M: Dioxin stimulates synthesis and secretion of IgE-dependent histamine-releasing factor. Biochem. Biophys. Res. Commun.. 2002, 290: S.984-987
Oleynikov Y, Singer RH: RNA localization: different zipcodes, same postman. Trends Cell Biol. . 1998, 8: S.381-383
Orphanides G, Reinberg D: A unified theory of gene expression. Cell. 2002, 108: S.439-451
Ostareck DH, Ostareck-Lederer A, Shatsky IN, Hentze MW: Lipoxygenase mRNA silencing in erythroid differentiation: The 3'UTR regulatory complex controls 60S ribosomal subunit joining. Cell. 2001, 104: S.281-290
Ostareck DH, Ostareck-Lederer A, Wilm M, Thiele BJ, Mann M, Hentze MW: mRNA silencing in erythroid differentiation: hnRNP K and hnRNP E1 regulate 15-lipoxygenase translation from the 3' end. Cell. 1997, 89: S.597-606
|
|
Ostareck-Lederer A, Ostareck DH, Cans C, Neubauer G, Bomsztyk K, Superti-Furga G, Hentze MW: c-Src-mediated phosphorylation of hnRNP K drives translational activation of specifically silenced mRNAs. Mol. Cell. Biol. . 2002, 22: S.4535-4543
Ostareck-Lederer A, Ostareck DH, Standart N, Thiele BJ: Translation of 15-lipoxygenase mRNA is inhibited by a protein that binds to a repeated sequence in the 3' untranslated region. EMBO J. 1994, 13: S.1476-1481
Pelham HR, Jackson RJ: An efficient mRNA-dependent translation system from reticulocyte lysates. Eur. J. Biochem. . 1976, 67: S.247-256
Pellizzoni L, Cardinali B, Lin-Marq N, Mercanti D, Pierandrei-Amaldi P: A Xenopus laevis homologue of the La autoantigen binds the pyrimidine tract of the 5' UTR of ribosomal protein mRNAs in vitro: implication of a protein factor in complex formation. J. Mol. Biol. . 1996, 259: S.904-915
Pellizzoni L, Lotti F, Rutjes SA, Pierandrei-Amaldi P: Involvement of the Xenopus laevis Ro60 autoantigen in the alternative interaction of La and CNBP proteins with the 5'UTR of L4 ribosomal protein mRNA. J. Mol. Biol. . 1998, 281: S.593-608
Pesole G, Mignone F, Gissi C, Grillo G, Licciulli F, Liuni S: Structural and functional features of eukaryotic mRNA untranslated regions. Gene . 2001, 276: S.73-81
Preiss T, Hentze MW: From factors to mechanisms: translation and translational control in eukaryotes. Curr. Opin. Genet. Dev.. 1999, 9: S.515-521
Rajagopalan LE, Westmark CJ, Jarzembowski JA, Malter JS: hnRNP C increases amyloid precursor protein (APP) production by stabilizing APP mRNA. Nucleic Acids Res. . 1998, 26: S.3418-3423
Rao K, Chen L, Gnanasekar M, Ramaswamy K: Cloning and characterization of a calcium-binding, histamine-releasing protein from Schistosoma mansoni. J. Biol. Chem.. 2002, 277: S.31207-31213
Reimann I, Huth A, Thiele H, Thiele BJ: Suppression of 15-lipoxygenase synthesis by hnRNP E1 is dependent on repetitive nature of LOX mRNA 3'-UTR control element DICE. J. Mol. Biol.. 2002, 315: S.965-974
Rouault TA, Hentze MW, Haile DJ, Harford JB, Klausner RD: The iron-responsive element binding protein: a method for the affinity purification of a regulatory RNA-binding protein. Proc. Natl. Acad. Sci. USA. 1989, 86: S.5768-5772
|
|
Sage-Ono K, Ono M, Harada H, Kamada H: Dark-induced accumulation of mRNA for a homolog of translationally controlled tumor protein (TCTP) in Pharbitis. Plant Cell Physiol.. 1998, 39: S.357-360
Sambrook J, Fritsch EF, Maniatis T: Molecular cloning - A laboratory manual. New York, Cold Spring Harbor Laboratory , 1989
Sanchez JC, Schaller D, Ravier F, Golaz O, Jaccoud S, Belet M, Wilkins MR, James R, Deshusses J, Hochstrasser D : Translationally controlled tumor protein: A protein identified in several nontumoral cells including erythrocytes. Electrophoresis. 1997, 18: S.150-155
Schmoll HJ, Höffken K, Possinger K: Kompendium Internistische Onkologie. 3. Auflage Berlin, Heidelberg, New York, Springer-Verlag, 1999
Schroeder JT, Lichtenstein LM, MacDonald S: An immunglobulin E-dependent recombinant histamine-releasing factor induces interleukin-4 secretion from human basophils. J. Exp. Med.. 1996, 183: S.1265-1270
Sinha P, Kohl S, Fischer J, Hütter G, Kern M, Köttgen E, Dietel M, Lage H, Schnölzer M, Schadendorf D: Identification of novel proteins associated with the development of chemoresistance in malignant melanoma using two-dimensional electrophoresis. Electrophoresis. 2000, 21: S.3048-3057
Siomi H, Dreyfuss G: RNA-binding proteins as regulators of gene expression. Curr. Opin. Genet. Dev. . 1997, 7: S.345-353
St Johnston D, Nüsslein-Volhard C: The origin of pattern and polarity in the Drosophila embryo. Cell. 1992, 68: S.201-219
Stolovich M, Tang H, Hornstein E, Levy G, Cohen R, Bae SS, Birnbaum MJ, Meyuhas O: Transduction of growth or mitogenic signals into translational activation of TOP mRNAs is fully reliant on the phosphatidylinositol 3-kinase-mediated pathway but requires neither S6K1 nor rpS6 phosphorylation. Mol. Cell. Biol. . 2002, 22: S.8101-8113
Stürzenbaum SR, Kille P, Morgan AJ: Identification of heavy metal induced changes in the expression patterns of the translationally controlled tumor protein (TCTP) in the earthworm Lumbricus rubellus . Biochim. Biophys. Acta. 1998, 1398: S.294-304
|
|
Sureau A, Perbal B: Several mRNAs with variable 3'untranslated regions and different stability encode the human PR264/SC35 splicing factor. Proc. Natl. Acad. Sci. USA. 1994, 91: S.932-936
Thaw P, Baxter NJ, Hounslow AM, Price C, Waltho JP, Craven CJ: Structure of TCTP reveals unexpected relationship with guanine nucleotide-free chaperones. Nat. Struct. Biol. . 2001, 8: S.701-704
Thiele H, Berger M, Lenzner C, Kühn H, Thiele BJ: Structure of the promoter and complete sequence of the gene coding for the rabbit translationally controlled tumor protein (TCTP) p23. Eur. J. Biochem. . 1998, 257: S.62-68
Thiele H, Berger M, Skalweit A, Thiele BJ: Expression of the gene and processed pseudogenes encoding the human and rabbit translationally controlled tumor protein (TCTP). Eur. J. Biochem.. 2000, 267: S.5473-5481
Thomas G, Thomas G: Translational control of mRNA expression during the early mitogenic response in Swiss mouse 3T3 cells. J. Cell Biol.. 1986, 103: S.2137-2144
Thomas G, Thomas G, Luther H: Transcriptional and translational control of cytoplasmic proteins after stimulation of quiescent Swiss 3T3 cells. Proc. Natl. Acad. Sci.. 1981, 78: S.5712-5716
Tuynder M, Susini L, Prieur S, Besse S, Fiucci G, Amson R, Telerman A: Biological models and genes of tumor reversion: Cellular reprogramming through tpt1/TCTP and SIAH-1. Proc. Natl. Acad. Sci. USA. 2002, 99: S.14976-81
Vanin EF: Processed pseudogenes-characteristics and evolution. Ann. Rev. Genet. . 1985, 19: S.253-272
Vercoutter-Edouart AS, Czeszak X, Crepin M, Lemoine J, Boilly B, Le Bourhis X, Peyrat JP, Hondermarck H: Proteomic detection of changes in protein synthesis induced by fibroblast growth factor-2 in MCF-7 human breast cancer cells. Exp. Cell. Res. . 2001, 262: S.59-68
Walker DJ, Pitsch JL, Peng MM, Robinson BL, Peters W, Bhisutthibhan J, Meshnick SR: Mechanisms of artemisinin resistance in the rodent malaria pathogen Plasmodium yoelii. Antimicrob. Agents Chemother.. 2000, 44: S.344-347
|
|
Walsh BJ, Gooley AA, Williams KL, Breit SN: Identification of macrophage activation association proteins by two-dimensional gel electrophoresis and microsequencing. J. Leukocyte Biol.. 1995, 57: S.507-512
Wickens M: Springtime in the desert. Nature . 1993, 363: S.305-306
Wickens M, Anderson P, Jackson RJ: Life and death in the cytoplasm: messages from the 3' end. Curr. Opin. Genet. Dev. . 1997, 7: S.220-232
Williams B: PKR; a sentinal kinase for cellular stress. Oncogene. 1999, 18: S.6112-6120
Wilson GM, Sutphen K, Moutafis M, Sinha S, Brewer G: Structural remodeling of an A + U-rich RNA element by cation or AUF1 binding. J. Biol. Chem. . 2001, 276: S.38400-38409
Wray W, Boulikas T, Wray VP, Hancock R: Silver staining of proteins in polyacrylamide gels. Anal. Biochem. . 1981, 118: S.197-203
Xing H, Zhang S, Weinheimer C, Kovacs A, Muslin AJ: 14-3-3 proteins block apoptosis and differentially regulate MAPK cascades. EMBO J.. 2000, 19: S.349-358
Xu A, Bellamy AR, Taylor JA: Expression of translationally controlled tumor protein is regulated by calcium at both the transcriptional and post-transcriptional level. Biochem. J.. 1999, 342: S.683-689
Yan L, Fei K, Bridge D, Sarras MP: A cnidarian homologue of translationally controlled tumor protein (p23/TCTP). Dev. Genes Evol.. 2000, 210: S.507-511
Yarm FR: Plk phosphorylation regulates the microtubule-stabilizing protein TCTP. Mol. Cell. Biol.. 2002, 22: S.6209-6221
Yenofsky R, Cereghini S, Krowczynska A, Brawerman G: Regulation of mRNA utilization in mouse erythroleukemia cells induced to differentiate by exposure to dimethyl sulfoxide. Mol. Cell. Biol.. 1983, 3: S.1197-1203
Zhang D, Li F, Weidner D, Mnjoyan ZH, Fujise K: Physical and functional interaction between myeloid cell leukemia 1 protein (MCL1) and Fortilin. The potential role of MCL1 as a fortilin chaperone. J. Biol. Chem. . 2002, 277: S.37430-37438
Zhu J, Hayakawa A, Kakegawa T, Kaspar RL: Binding of the La autoantigen to the 5' untranslated region of a chimeric human translation elongation factor 1A reporter mRNA inhibits translation in vitro. Biochim. Biophys. Acta . 2001, 1521: S.19-29
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