Vertebrate Development Maternal to Zygotic Control (Advances in Experimental Medicine and Biology)

(nextflipdebug2) #1

528


Jin J, Cardozo T, Lovering RC, Elledge SJ, Pagano M, Harper JW (2004) Systematic analysis and
nomenclature of mammalian F-box proteins. Genes Dev 18(21):2573–2580. doi:10.1101/
gad.1255304
Jinek M, Doudna JA (2009) A three-dimensional view of the molecular machinery of RNA inter-
ference. Nature 457(7228):405–412. doi:10.1038/nature07755, nature07755 [pii]
Jorgensen P, Steen JA, Steen H, Kirschner MW (2009) The mechanism and pattern of yolk con-
sumption provide insight into embryonic nutrition in Xenopus. Development 136(9):1539–



  1. doi:10.1242/dev.032425
    Kageyama S, Liu H, Kaneko N, Ooga M, Nagata M, Aoki F (2007) Alterations in epigenetic modi-
    fications during oocyte growth in mice. Reproduction 133(1):85–94. doi:10.1530/
    REP-06-0025
    Kaneda M, Tang F, O'Carroll D, Lao K, Surani MA (2009) Essential role for Argonaute2 protein
    in mouse oogenesis. Epigenetics Chromatin 2(1):9
    Kim JM, Liu H, Tazaki M, Nagata M, Aoki F (2003) Changes in histone acetylation during mouse
    oocyte meiosis. J Cell Biol 162(1):37–46. doi:10.1083/jcb.200303047
    Kim VN, Han J, Siomi MC (2009) Biogenesis of small RNAs in animals. Nat Rev Mol Cell Biol
    10(2):126–139
    Kimmins S, Sassone-Corsi P (2005) Chromatin remodelling and epigenetic features of germ cells.
    Nature 434(7033):583–589. doi:10.1038/nature03368
    Kleppe L, Edvardsen RB, Kuhl H, Malde K, Furmanek T, Drivenes O, Reinhardt R, Taranger GL,
    Wargelius A (2012) Maternal 3′UTRs: from egg to onset of zygotic transcription in Atlantic
    cod. BMC Genomics 13:443. doi:10.1186/1471-2164-13-443
    Knowland J, Graham C (1972) RNA synthesis at the two-cell stage of mouse development.
    J Embryol Exp Morphol 27(1):167–176
    Kourmouli N, Jeppesen P, Mahadevhaiah S, Burgoyne P, Wu R, Gilbert DM, Bongiorni S, Prantera
    G, Fanti L, Pimpinelli S, Shi W, Fundele R, Singh PB (2004) Heterochromatin and tri-
    methylated lysine 20 of histone H4 in animals. J Cell Sci 117(Pt 12):2491–2501. doi:10.1242/
    jcs.01238
    Lane N, Dean W, Erhardt S, Hajkova P, Surani A, Walter J, Reik W (2003) Resistance of IAPs to
    methylation reprogramming may provide a mechanism for epigenetic inheritance in the mouse.
    Genesis 35(2):88–93. doi:10.1002/gene.10168
    Lee M, Choi Y, Kim K, Jin H, Lim J, Nguyen TA, Yang J, Jeong M, Giraldez AJ, Yang H, Patel
    DJ, Kim VN (2014) Adenylation of maternally inherited microRNAs by Wispy. Mol Cell
    56(5):696–707. doi:10.1016/j.molcel.2014.10.011
    Leitch HG, Tang WW, Surani MA (2013) Primordial germ-cell development and epigenetic repro-
    gramming in mammals. Curr Top Dev Biol 104:149–187. doi:10.1016/
    B978-0-12-416027-9.00005-X
    Lepikhov K, Zakhartchenko V, Hao R, Yang F, Wrenzycki C, Niemann H, Wolf E, Walter J (2008)
    Evidence for conserved DNA and histone H3 methylation reprogramming in mouse, bovine
    and rabbit zygotes. Epigenetics Chromatin 1(1):8. doi:10.1186/1756-8935-1-8
    Lequarre AS, Traverso JM, Marchandise J, Donnay I (2004) Poly(A) RNA is reduced by half dur-
    ing bovine oocyte maturation but increases when meiotic arrest is maintained with CDK inhibi-
    tors. Biol Reprod 71(2):425–431. doi:10.1095/biolreprod.103.026724
    Li E, Zhang Y (2014) DNA methylation in mammals. Cold Spring Harb Perspect Biol 6(5):a019133.
    doi:10.1101/cshperspect.a019133
    Link V, Shevchenko A, Heisenberg CP (2006) Proteomics of early zebrafish embryos. BMC Dev
    Biol 6:1. doi:10.1186/1471-213X-6-1
    Lund E, Liu M, Hartley RS, Sheets MD, Dahlberg JE (2009) Deadenylation of maternal mRNAs
    mediated by miR-427 in Xenopus laevis embryos. RNA (New York, NY) 15(12):2351–2363
    Lund E, Sheets MD, Imboden SB, Dahlberg JE (2011) Limiting Ago protein restricts RNAi and
    microRNA biogenesis during early development in Xenopus laevis. Genes Dev 25(11):1121–

  2. doi:10.1101/gad.2038811
    Luo SM, Schatten H, Sun QY (2013a) Sperm mitochondria in reproduction: good or bad and
    where do they go? J Genet Genom 40(11):549–556. doi:10.1016/j.jgg.2013.08.004


P. Svoboda et al.

http://www.ebook3000.com

Free download pdf