ΠŸΠΎΠΌΠΎΡ‰ΡŒ Π² написании студСнчСских Ρ€Π°Π±ΠΎΡ‚
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Бписок Π»ΠΈΡ‚Π΅Ρ€Π°Ρ‚ΡƒΡ€Ρ‹. 
Π‘ΠΈΠ³Π½Π°Π»ΡŒΠ½Ρ‹Π΅ ΠΏΡƒΡ‚ΠΈ ΠΊΠ»Π΅Ρ‚ΠΎΠΊ Π² ΠΎΠ½Ρ‚ΠΎΠ³Π΅Π½Π΅Π·Π΅ ΠΆΠΈΠ²ΠΎΡ‚Π½Ρ‹Ρ…

Π Π΅Ρ„Π΅Ρ€Π°Ρ‚ΠŸΠΎΠΌΠΎΡ‰ΡŒ Π² Π½Π°ΠΏΠΈΡΠ°Π½ΠΈΠΈΠ£Π·Π½Π°Ρ‚ΡŒ ΡΡ‚ΠΎΠΈΠΌΠΎΡΡ‚ΡŒΠΌΠΎΠ΅ΠΉ Ρ€Π°Π±ΠΎΡ‚Ρ‹

Brou C., Logeat F., Lecourtois M., Vandekerckhove J., Kourilsky Ph., Schweisguth F., Israell A. Inhibition of the DNA-binding activity of Drosophila Supressor of Hairless and of its human homolog, KBF2/RBP-J ?, by direct protein-protein interection with Drosophila Hairless // Genes Dev. 1994. V. 8. P. 2491βˆ’2503. Π¨Π΅ΠΌΠ°Ρ€ΠΎΠ²Π° И. Π’. Роль фосфорилирования ΠΏΠΎ Ρ‚ΠΈΡ€ΠΎΠ·ΠΈΠ½Ρƒ Π² Ρ€Π΅Π³ΡƒΠ»ΡΡ†ΠΈΠΈ ΠΏΡ€ΠΎΠ»ΠΈΡ„Π΅Ρ€Π°Ρ†ΠΈΠΈ ΠΈ ΠΊΠ»Π΅Ρ‚ΠΎΡ‡Π½ΠΎΠΉ… Π§ΠΈΡ‚Π°Ρ‚ΡŒ Π΅Ρ‰Ρ‘ >

Бписок Π»ΠΈΡ‚Π΅Ρ€Π°Ρ‚ΡƒΡ€Ρ‹. Π‘ΠΈΠ³Π½Π°Π»ΡŒΠ½Ρ‹Π΅ ΠΏΡƒΡ‚ΠΈ ΠΊΠ»Π΅Ρ‚ΠΎΠΊ Π² ΠΎΠ½Ρ‚ΠΎΠ³Π΅Π½Π΅Π·Π΅ ΠΆΠΈΠ²ΠΎΡ‚Π½Ρ‹Ρ… (Ρ€Π΅Ρ„Π΅Ρ€Π°Ρ‚, курсовая, Π΄ΠΈΠΏΠ»ΠΎΠΌ, ΠΊΠΎΠ½Ρ‚Ρ€ΠΎΠ»ΡŒΠ½Π°Ρ)

  • 1. Вайсман Н. Π―., Π—Π°Ρ…Π°Ρ€ΠΎΠ² И. Π›., ΠšΠΎΡ€ΠΎΡ‡ΠΊΠΈΠ½ Π›. И. Π“Π΅Π½ Notch ΠΈ ΡΡƒΠ΄ΡŒΠ±Π° ΠΏΠ»ΠΎΠ΄ΠΎΠ²ΠΎΠΉ ΠΌΡƒΡˆΠΊΠΈ Drosophila melanogaster // УспСхи соврСм. Π±ΠΈΠΎΠ»ΠΎΠ³ΠΈΠΈ. 2002. Π’. 122, № 1. Π‘. 95−108.
  • 2. Π“ΠΈΠ»Π±Π΅Ρ€Ρ‚ Π‘. Биология развития. М.: ΠœΠΈΡ€, 1995. Π’. 3. 352 с.
  • 3. Π“ΡƒΠ±Π΅Π½ΠΊΠΎ И. Π‘. Локус Delta Π² Notch сигнальной систСмС: организация ΠΈ ΠΏΠ»Π΅ΠΉΠΎΡ‚ропная функция // Цитология ΠΈ Π³Π΅Π½Π΅Ρ‚ΠΈΠΊΠ°. 2001. Π’. 35, № 4. Π‘. 59−80.
  • 4. ΠšΠΎΡ€ΠΎΡ‡ΠΊΠΈΠ½ Π›. И.

    Π’Π²Π΅Π΄Π΅Π½ΠΈΠ΅

    Π² Π³Π΅Π½Π΅Ρ‚ΠΈΠΊΡƒ развития. М.: Наука, 1999. 253 с.

  • 5. ΠšΠΎΡ€ΠΎΡ‡ΠΊΠΈΠ½ Π›. И., ΠœΠΈΡ…Π°ΠΉΠ»ΠΎΠ² А. Π’.

    Π’Π²Π΅Π΄Π΅Π½ΠΈΠ΅

    Π² Π½Π΅ΠΉΡ€ΠΎΠ³Π΅Π½Π΅Ρ‚ΠΈΠΊΡƒ. М.: Наука, 2000. 274 с.

  • 6. Π‘Π΅Ρ€ΠΎΠ² О. Π›. Π“Π΅Π½Π½Ρ‹ΠΉ ΠΈ Ρ…ромосомный ΡƒΡ€ΠΎΠ²Π½ΠΈ контроля развития // Π˜Π½Ρ„ΠΎΡ€ΠΌ. вСстник Π’ΠžΠ“ΠΈΠ‘. 2003. № 24/25. Π‘. 2−8.
  • 7. ВарчСвский И. А. Π‘ΠΈΠ³Π½Π°Π»ΡŒΠ½Ρ‹Π΅ систСмы ΠΊΠ»Π΅Ρ‚ΠΎΠΊ растСний. М.: Наука, 2002. 294 с.
  • 8. ВарчСвский И. А. Элиситор-ΠΈΠ½Π΄ΡƒΡ†ΠΈΡ€ΡƒΠ΅ΠΌΡ‹Π΅ ΡΠΈΠ³Π½Π°Π»ΡŒΠ½Ρ‹Π΅ систСмы ΠΈ ΠΈΡ… Π²Π·Π°ΠΈΠΌΠΎΠ΄Π΅ΠΉΡΡ‚Π²ΠΈΠ΅ // Ѐизиология растСний. 2000. Π’. 47, № 2. Π‘. 321−331.
  • 9. Π¨Π΅ΠΌΠ°Ρ€ΠΎΠ²Π° И. Π’. Роль фосфорилирования ΠΏΠΎ Ρ‚ΠΈΡ€ΠΎΠ·ΠΈΠ½Ρƒ Π² Ρ€Π΅Π³ΡƒΠ»ΡΡ†ΠΈΠΈ ΠΏΡ€ΠΎΠ»ΠΈΡ„Π΅Ρ€Π°Ρ†ΠΈΠΈ ΠΈ ΠΊΠ»Π΅Ρ‚ΠΎΡ‡Π½ΠΎΠΉ Π΄ΠΈΡ„Ρ„Π΅Ρ€Π΅Π½Ρ†ΠΈΡ€ΠΎΠ²ΠΊΠΈ Ρƒ Π½ΠΈΠ·ΡˆΠΈΡ… эукариот // Цитология. 2003. Π’. 45, № 2. Π‘. 196−215.
  • 10. Π¨ΠΏΠ°ΠΊΠΎΠ² А. О., Π”Π΅Ρ€ΠΊΠ°Ρ‡ К. Π’., ΠŸΠ΅Ρ€Ρ†Π΅Π²Π° М. Н. Π“ΠΎΡ€ΠΌΠΎΠ½Π°Π»ΡŒΠ½Ρ‹Π΅ ΡΠΈΠ³Π½Π°Π»ΡŒΠ½Ρ‹Π΅ систСмы Π½ΠΈΠ·ΡˆΠΈΡ… эукариот // Цитология. Π’. 45 № 3. 223−234.
  • 11. Alamo D., Terriente J., Diaz-Benjumea F.J. Spitz/EGFr signalling via the Ras/MAPK pathway mediates the induction of bract cells in Drosophila legs // Development. 2002. V. 129. P. 1975;1982.
  • 12. Arias A.M. New alleles of Notch drow a blueprint for multifunctionality // Trends in Genet. 2002. V. 18. P. 168−170.
  • 13. Artavanis-Tsakonas S., Matsuno K., Fortiny M.E. Notch signalling // Science. 1995. V. 268. P. 225−232.
  • 14. Axelrod J.D., Matsuno K., Artavanis-Tsakonas S., Perrimon N. Interection between Wingless and Notch signaling pathways mediated by Dishevelled // Science. 1996. V. 271. P. 1826−1831.
  • 15. Baonza A., Freeman M. Notch signalling and the initiation of neural development in the Drosophila eye // Development. 2001. V. 128. P. 3889−3898.
  • 16. Baonza A., Freeman M. Control of Drosophila eye specification by Wingless signaling // Development. 2002. V. 129. P. 5313−5322.
  • 17. Barolo S., Stone T., Bang A.G., Posakony J.W. Default repression and Notch signaling: Hairless acts as an adaptor to recruit the corepressors Groucho and dCtBP to Suppressor of Hairless // Genes Dev. 2002. V. 15. P. 1964;1976.
  • 18. Brou C., Logeat F., Lecourtois M., Vandekerckhove J., Kourilsky Ph., Schweisguth F., Israell A. Inhibition of the DNA-binding activity of Drosophila Supressor of Hairless and of its human homolog, KBF2/RBP-J ?, by direct protein-protein interection with Drosophila Hairless // Genes Dev. 1994. V. 8. P. 2491−2503.
  • 19. Cadigan K.M., Nusse R. Wnt signaling: a common theme in animal development // Genes Dev. 1997. V. 11. P. 3286−3305.
  • 20. Cagan R.L., Ready D.F. Notch is required for successive cell decisions in the developing Drosophila retina // Genes Dev. 1989. V. 3. P. 1099−1112.
  • 21. Crozatier M., Glise B., Vincent A. Connecting Hh, Dpp and EGF signalling in patterning of the Drosophila wing; the pivotal role of collier/knot in the AP organiser // Development. 2002. V. 129. P. 4261−4269.
  • 22. Culi J., Martin-Blanco E., Modolell J. The EGF receptor and N signalling pathways act antagonistically in Drosophila mesothorax bristle patterning // Development. 2001. V. 128. P. 299−308.
  • 23. Diaz-Benjumea F.J., Cohen C.M. Interection between dorsal and ventral cells in the imaginal disc directs wing development in Drosophila // Cell. 1993. V. 75. P. 741−752.
  • 24. Diederich R.J., Matsuno K., Hing H., Artavanis-Tsakonas S. Cytosolic interection between deltex and Notch ankyrin repeats implicates deltex in the signalling pathway // Development. 1994. V. 120. P. 473−481.
  • 25. Doherty D., Feger G., Younger-Shepherd S., Jan L.Y., Jan Y.N. Delta is a ventral to dorsal signal complementary to Serrate, another Notch ligand, in Drosophila wing formation // Genes Dev. 1996. V. 10. P. 421−434.
  • 26. Fleming R.J., Scottgale T.N., Diederich R.G., Artavanis-Tsakonas S. The gene Serrate encodes a putative EGF-like transmembrane protein essential for proper ectodermal development in Drosophila melanogaster // Genes Dev. 1990. V. 4. P. 2188−2201.
  • 27. Fortiny M.E., Artavanis-Tsakonas S. The Supressor of Hairless protein participate in Notch receptor signaling // Cell. 1994. V. 79. P. 273−282.
  • 28. Freeman M. A fly’s eye view of EGF receptor signaling // EMBO J. 2002. V. 21. P. 6635−6642.
  • 29. Glass Ch.K., Rosenfeld M.G. The coregulator exchange in transcriptional functions of nuclear receptors // Genes Dev. 2002. V. 14. P. 121−141.
  • 30. Glazer L., Shilo B. Hedgehog signaling patterns the tracheal branches // Development. 2001. V. 128. P. 1599−1606.
  • 31. Hartenstein V., Tepass U., Gruszynski-de Feo E. Proneural and neurogenic genes control specification and morphogenesis of stomatogastric nerve cell precursors in Drosophila // Dev. Biol. 1996. V. 173. P. 213−227.
  • 32. Hatini V., DiNardo S. Divide and conquer: pattern formation in Drosophila embryonic epidermis // Trends in Genet. 2001. V. 17. P. 574−579.
  • 33. Heitzler P., Bourouis M., Ruel L., Carteret C., Simpson P. Genes of the Enhancer of split and achaete-scute complexes are required for a regulatory loop between Notch and Delta during lateral signalling in Drosophila // Development. 1996. V. 122. P. 161−167.
  • 34. Ingham P.W. Hedgehog signaling: a tale of two lipids // Science. 2001. V. 294. P. 1879−1881.
  • 35. Ingham P.W., McMahon A.P. Hedgehog signaling in animal development: paradigms and principles // Genes Dev. 2001. V. 15. P. 3059−3087.
  • 36. Jennings B., Preiss A., Delidakis C., Bray S. The Notch signalling pathway is required for Enhancer of split bHLH protein expression during neurogenesis in the Drosophila embryo // Development. 1994. V. 120. P. 3537−3548.
  • 37. Jonhston L., A., Gallant P. Control of growth and organ size in Drosophila // BioEssays. 2002. V. 24. P. 54−64.
  • 38. Ju B.G., Jeong S., Bae E., Hyun S., Carroll S.B., Yim J., Kim J. Fringe forms a complex with Notch // Nature. 2000. V. 405. P. 191−195.
  • 39. Kheradmand F., Werb Z. Shedding light on sheddases: role in growth and development // BioEssays. 2002. V. 24. P. 8−12.
  • 40. Kidd S., Lockett T.D., Young M.W. The Notch locus of Drosophila melanogaster // Cell. 1983. V. 34. P. 421−433.
  • 41. Kidd S., Baylies M.K., Gasic G.P., Young M.W. Structure and distribution of the Notch protein in development Drosophila // Genes Dev. 1989. V. 3. P. 1113−1129.
  • 42. Klein T., Seugnet L., Haenlin M., Arias A.M. Two different activities of Suppressor of Hairless during wing development in Drosophila // Development. 2000. V. 127. P. 3553−3566.
  • 43. Knust E., Tietze K., Campos-Ortega J.A. Molecular analysis of the neurogenic locus Enhancer of split of Drosophila melanogaster // EMBO J. 1987. V. 6. P. 4113−4123.
  • 44. Lawrence N., Klein T., Brennan K., Arias A.M. Structural requirements for Notch signalling with Delta and Serrate during the development and patterning of the wing disc of Drosophila // Development. 2000. V. 127. P. 3185−3195.
  • 45. Lieber T., Kidd S., Young M.W. Kuzbanian-mediated cleavage of Drosophila Notch // Genes Dev. 2002. V. 16. P. 209−211.
  • 46. Lindsley D.L., Zimm G.G. The genome of Drosophila melanogaster. New York: Academic Press, 1992.
  • 47. Luo H., Dearolf C.R. The JAK/STAT pathway and Drosophila development // BioEssays. 2001. V. 23. P. 1138−1147.
  • 48. Lyman B., Yedvobnik B. Drosophila Notch recepter activity supresses Hairless functon during adult external sensory organ development // Genetics. 1995. V. 141. P. 1491−1505.
  • 49. Massague J., Chen Y. Controlling TGF-signaling // Genes Dev. 2000. V. 14. P. 627−644.
  • 50. Matsuno K., Ito M., Hori K., Miyashita F., Suzuki S., Kishi N., Artavanis-Tsakonas S., Okano H. Involvement of proline-rich motif and RING-H2 finger of Deltex in the regulation of Notch signaling // Development. 2002. V. 129. P. 1049−1059.
  • 51. Millor J.L., Altaba A.R. Growth, hedgehog and the price of GAS // BioEssays. 2002. V. 24. P. 22−26.
  • 52. Missler M., Sudhof T.S. Neurexins: three genes and 1001 products // TIG. 1998. V. 14. P. 20−26.
  • 53. Mohler J., Vani K. Molecular organisation and embryonic expression of the hedgehog gene involved in cell-cell communication in segmental patterning in Drosophila // Development. 1992. V. 115. P. 957−971.
  • 54. Mumm J.S., Kopan R. Notch Signaling: Π°rom the Outside In // Dev. Biol. 2000. V. 228. P. 151−165.
  • 55. Neumann C., Cohen S. Morphogens and pattern formation // BioEssays. 1997. V. 19. P. 721−772.
  • 56. Ng M., Diaz-Benjumea F.J., Vincent J.P., Wu J., Cohen S.M. Specification of the wing by localized expression of Wingless protein // Nature. 1996. V. 381. P. 316−318.
  • 57. Pan D., Rubin G.M. Kuzbanian controls proteolytic processing of Notch and mediates lateral inhibition during Drosophila and vertebrate neurogenesis // Cell. 1997. V. 90. P. 271−280.
  • 58. Parks A.L., Klueg K.M., Stout J.R., Muskavitch M.A. Ligand endocytosis drives receptor dissociation and activation in the Notch pathway // Development. 2000. V. 127. P. 1373−1385.
  • 59. Pires-daSilva A., Sommer R.J. The evolution of signaling pathways in animal development // Nature Reviews, Genetics. 2003. V. 4. P. 39−49.
  • 60. Portin P. General outlines of the molecular genetics of the Notch signalling pathway in Drosophila melanogaster: a review // Hereditas. 2002. V. 136. P. 89−96.
  • 61. Qi H., Rand M.D., Wu X., Sestan N., Wang W., Rakic P., Xu T., Artavanis-Tsakonas S. Processing of the Notch ligand Delta by the metalloprotease Kuzbanian // Science. 1999. V. 283. P. 91−94.
  • 62. Ray W.J., Yao M., Nowotny P., Mummdagger J., ZhangDagger W., WuDagger J.Y., Kopandagger R., Goate A.M. Evidence for a physical interaction between Presenilin and Notch // Proc. Natl Acad. Sci. 1999. V. 96. P. 3263−3268.
  • 63. Rauskolb C. The establishment of segmentation in the Drosophila leg // Development. 2001. V. 128. P. 4511−4521.
  • 64. Rebay I., Fehon R., Artavanis-Tsakonas S. Specific truncations of Drosophila Notch define dominant activated and dominant negative forms of the receptor // Cell. 1993. V. 74. P. 319−329.
  • 65. Rooke J., Pan D., Xu T., Rubin G.M. Kuz a conserved metalloprotease-disintegrin protein with two roles in Drosophila neurogenesis // Science. 1996. V. 273. P. 1227−1231.
  • 66. Ruohola H., Bremer K.A., Baker D., Swedlow J.R., Jan L.Y., Jan Y.N. Role of neurogenic genes in establishment of follicle cell fate and oocyte polarity during oogenesis in Drosophila // Cell. 1991. V. 66. P. 433−449.
  • 67. Shepard S.B., Broverman S.A., Muskavitch M.A.T. A tripartite interection among of allele of Notch, Delta and Enhancer of split during imaginal development of DrosophilΠ° melanogaster// Genetics. 1989. V. 122. P. 429−438.
  • 68. Sotillos S., Roch F., Campuzano S. The metalloprotease-desintegrin Kusbanian perticipates in Notch activation during growth and partenning of Drosophila imaginal discs // Development. 1997. V. 124. P. 4769−4779.
  • 69. Speicher S.A., Thomas U., Knust U.H., Knust E. The Serrate locus of Drosophila and its role in morphogenesis of the wing imaginal discs: control of cell proliferation // Development. 1994. V. 120. P. 535−544.
  • 70. Struhl G., Adachi A. Nuclear access and action of Notch in vivo // Cell. 1998. V. 93. P. 649−660.
  • 71. Struhl G., Greenwald I. Presenilin mediated transmembrane cleavage is required for Notch signal transduction in Drosophila // Proc. Natl Acad. Sci. USA. 2001. V. 98. P. 229−234.
  • 72. Sudarsan V., Pasalodos-Sanchez S., Wan S., Gampel A., Skaer H. A genetic hierarchy establishes mitogenic signalling and mitotic competence in the renal tubules of Drosophila // Development. 2002. V. 129. P. 935−944.
  • 73. Vervoort M. hedgehog and wing development in Drosophila: a morphogen at work? // BioEssays. 2000. V. 22. P. 460−468.
  • 74. Warton K.A., Jahansen K.M., Xu T., Artavanis-Tsakonas S. Nucleotide sequence from the neurogenic locus Notch implies a gene product that shares homology with protein containing EGF-like repeats // Cell. 1985. V. 43. P. 567−581.
  • 75. Xu T., Caron L.A., Fehon R.G., Artavanis-Tsakonas S. The involvement of the Notch locus in Drosophila oogenesis // Development. 1992. V. 115. P. 913−922.
  • 76. Zeng X., Goetz J., Suber L., Scott W.J., Schreiner C., Robbin D. A freely diffusible form of Sonic hedgehog mediates long-range signaling // Nature. 2001. V. 411. P. 716−720.
  • 77. Zhang Y., Kalderon D. Regulation of cell proliferation and patterning in Drosophila oogenesis by Hedgehog signaling // Development. 2000. V. 127. P. 2165−2176.
  • 78. Ye Y., Lukinova N., Fortiny M.E. Neurogenic phenotypes and altered Notch processing in Drosophila presenilin mutants // Nature. 1999. V. 398. P. 525−529.

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