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1 le and oocytes lacking Snf2h fail to undergo meiotic resumption.
2 ction in meiosis in that it is essential for meiotic resumption.
3 major sperm protein (MSP) signal to trigger meiotic resumption.
4 ng a causal role for AMPK in hormone-induced meiotic resumption.
5 rowth factor-1 stimulation of Xenopus oocyte meiotic resumption.
6 tides completely abrogates steroid-triggered meiotic resumption.
7 ele of the EGFR, LH no longer signals oocyte meiotic resumption.
8 ted AMPK activation in oocytes and triggered meiotic resumption.
9 Mos protein accumulation and acceleration of meiotic resumption.
10 ar cells expressing EGFR-Grb7 exhibit normal meiotic resumption.
11 ation for cellular repair processes prior to meiotic resumption.
12 mics, and requirements for oocyte growth and meiotic resumption.
13 cGMP diffusion out of the oocyte, initiating meiotic resumption.
14 r (MPF) activation, and severely compromised meiotic resumption.
16 uranoside (araA), blocked FSH- or AR-induced meiotic resumption and ACC phosphorylation, further supp
17 ctivates CDK1, is responsible for precocious meiotic resumption and also contributes to subsequent sp
19 ation of either Wee1B or Myt1 causes partial meiotic resumption, and oocytes reenter the cell cycle o
20 emonstrate the importance of Snf2h in oocyte meiotic resumption, but also reveal the mechanism underl
22 ne (LH) on the mouse ovarian follicle causes meiotic resumption by inhibiting GPR3-G(s) signaling, we
24 arkable similarity between the regulation of meiotic resumption by soma-germline interactions in C. e
26 ge of luteinizing hormone (LH) that triggers meiotic resumption, depends on a high level of cAMP with
27 us studies also established that it prevents meiotic resumption, equivalent to the G2/M transition.
29 xes were completely absent in oocytes during meiotic resumption, homologous chromosomes failed to seg
32 umulation plays a pivotal role in preventing meiotic resumption in mammalian oocytes, the mechanisms
37 of vertebrate ovarian follicles to stimulate meiotic resumption in the oocyte requires a decrease in
40 ked with roles in coordinating events during meiotic resumption, including polo-like kinases (PLKs).
41 major sperm protein (MSP) signal to trigger meiotic resumption (meiotic maturation) and to promote c
44 volved in specific meiotic stages, including meiotic resumption, spindle assembly, and spindle positi
45 comes enriched at the vegetal pole following meiotic resumption through a dissolution-reassembly mech
46 bditis elegans, major sperm protein triggers meiotic resumption through a mechanism involving somatic
47 way is implicated in both meiotic arrest and meiotic resumption, thus spatio-temporal changes in PKA
48 in associates with nuclear speckles and upon meiotic resumption, undergoes a striking re-localization
49 in vitro by mutant sperm displayed impaired meiotic resumption unrelated to Ca(2+) oscillations defe
50 tes or is maintained at levels inhibitory to meiotic resumption via diffusion from somatic cells.
51 tivity in the oocyte is sufficient to induce meiotic resumption was demonstrated by expression of an
54 To further assess the roles of PLK1 during meiotic resumption, we developed a Plk1 conditional knoc
55 signaling acts upstream of ITR-1 to inhibit meiotic resumption, while NMR-1 prevents signaling by th
56 /pwe) female infertility is premature oocyte meiotic resumption, while the pituitary and uterus appea