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1.

Role for PADI6 and the cytoplasmic lattices in ribosomal storage in oocytes and translational control in the early mouse embryo.

Yurttas P, Vitale AM, Fitzhenry RJ, Cohen-Gould L, Wu W, Gossen JA, Coonrod SA.

Development. 2008 Aug;135(15):2627-36. doi: 10.1242/dev.016329.

2.

Transcription factor FIGLA is mutated in patients with premature ovarian failure.

Zhao H, Chen ZJ, Qin Y, Shi Y, Wang S, Choi Y, Simpson JL, Rajkovic A.

Am J Hum Genet. 2008 Jun;82(6):1342-8. doi: 10.1016/j.ajhg.2008.04.018.

3.

Structure and function of KH domains.

Valverde R, Edwards L, Regan L.

FEBS J. 2008 Jun;275(11):2712-26. doi: 10.1111/j.1742-4658.2008.06411.x. Review.

4.
5.

Distribution of RNA binding protein MOEP19 in the oocyte cortex and early embryo indicates pre-patterning related to blastomere polarity and trophectoderm specification.

Herr JC, Chertihin O, Digilio L, Jha KN, Vemuganti S, Flickinger CJ.

Dev Biol. 2008 Feb 15;314(2):300-16. doi: 10.1016/j.ydbio.2007.11.027.

6.

Tead4 is required for specification of trophectoderm in pre-implantation mouse embryos.

Nishioka N, Yamamoto S, Kiyonari H, Sato H, Sawada A, Ota M, Nakao K, Sasaki H.

Mech Dev. 2008 Mar-Apr;125(3-4):270-83.

7.

Maternally derived FILIA-MATER complex localizes asymmetrically in cleavage-stage mouse embryos.

Ohsugi M, Zheng P, Baibakov B, Li L, Dean J.

Development. 2008 Jan;135(2):259-69.

8.

The role of the PDZ protein GIPC in regulating NMDA receptor trafficking.

Yi Z, Petralia RS, Fu Z, Swanwick CC, Wang YX, Prybylowski K, Sans N, Vicini S, Wenthold RJ.

J Neurosci. 2007 Oct 24;27(43):11663-75.

9.

Transcription factor TEAD4 specifies the trophectoderm lineage at the beginning of mammalian development.

Yagi R, Kohn MJ, Karavanova I, Kaneko KJ, Vullhorst D, DePamphilis ML, Buonanno A.

Development. 2007 Nov;134(21):3827-36.

10.

Atypical structure and phylogenomic evolution of the new eutherian oocyte- and embryo-expressed KHDC1/DPPA5/ECAT1/OOEP gene family.

Pierre A, Gautier M, Callebaut I, Bontoux M, Jeanpierre E, Pontarotti P, Monget P.

Genomics. 2007 Nov;90(5):583-94.

11.

The 'Marx' of Groucho on development and disease.

Buscarlet M, Stifani S.

Trends Cell Biol. 2007 Jul;17(7):353-61. Review.

PMID:
17643306
12.
13.

Oocyte-specific genes affect folliculogenesis, fertilization, and early development.

Zheng P, Dean J.

Semin Reprod Med. 2007 Jul;25(4):243-51. Review.

PMID:
17594605
14.

Peptidylarginine deiminase (PAD) 6 is essential for oocyte cytoskeletal sheet formation and female fertility.

Esposito G, Vitale AM, Leijten FP, Strik AM, Koonen-Reemst AM, Yurttas P, Robben TJ, Coonrod S, Gossen JA.

Mol Cell Endocrinol. 2007 Jul 15;273(1-2):25-31.

PMID:
17587491
15.

Ovarian gene expression in the absence of FIGLA, an oocyte-specific transcription factor.

Joshi S, Davies H, Sims LP, Levy SE, Dean J.

BMC Dev Biol. 2007 Jun 13;7:67.

16.

Germ versus soma decisions: lessons from flies and worms.

Strome S, Lehmann R.

Science. 2007 Apr 20;316(5823):392-3. Review.

PMID:
17446385
17.

Blastocyst axis is specified independently of early cell lineage but aligns with the ZP shape.

Kurotaki Y, Hatta K, Nakao K, Nabeshima Y, Fujimori T.

Science. 2007 May 4;316(5825):719-23.

18.

Pathway to totipotency: lessons from germ cells.

Seydoux G, Braun RE.

Cell. 2006 Dec 1;127(5):891-904. Review.

19.

Localization of ubiquitin C-terminal hydrolase L1 in mouse ova and its function in the plasma membrane to block polyspermy.

Sekiguchi S, Kwon J, Yoshida E, Hamasaki H, Ichinose S, Hideshima M, Kuraoka M, Takahashi A, Ishii Y, Kyuwa S, Wada K, Yoshikawa Y.

Am J Pathol. 2006 Nov;169(5):1722-9.

20.

Maternal BRG1 regulates zygotic genome activation in the mouse.

Bultman SJ, Gebuhr TC, Pan H, Svoboda P, Schultz RM, Magnuson T.

Genes Dev. 2006 Jul 1;20(13):1744-54.

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