References
- Brami-Cherrier K., Roze E., Girault J.A., Betuing S., Caboche J. (2009). Role of the ERK/MSK1 signalling pathway in chromatin remodelling and brain responses to drugs of abuse. J. Neurochem., 108: 1323–1335.10.1111/j.1471-4159.2009.05879.x19183268
- Cargnello M., Roux P.P. (2012). Activation and function of the MAPKs and their substrates, the MAPK-activated protein kinases. Microbiol. Mol. Biol. Rev., 76: 496.10.1128/MMBR.00013-12
- Carpenter O.L., Wu S. (2014). Regulation of MSK 1-mediated NF-κB activation upon UVB irradiation. Photochem. Photobiol., 90: 155–161.10.1111/php.12163393729824033137
- Deak M., Clifton A.D., Lucocq J.M., Alessi D.R. (1998). Mitogen- and stress-activated protein kinase-1 (MSK1) is directly activated by MAPK and SAPK2/p38, and may mediate activation of CREB. EMBO J., 17: 4426–4441.10.1093/emboj/17.15.442611707759687510
- Ding N., Han Q., Zhao X.Z., Li Q., Li J., Zhang H.F., Gao G.L., Luo Y., Xie Y.H., Su J. (2015). Differential gene expression in pre-laying and laying period ovaries of Sichuan White geese (Anser cygnoides). Genet. Mol. Res., 14: 6773–6785.10.4238/2015.June.18.2026125885
- Farley N., Pedraza-Alva G., Serrano-Gomez D., Nagaleekar V., Aronshtam A., Krahl T., Thornton T., Rincón M. (2006). p38 mitogen-activated protein kinase mediates the Fas-induced mitochondrial death pathway in CD8+ T cells. Mol. Cell. Biol., 26: 2118–2129.10.1128/MCB.26.6.2118-2129.2006143030416507991
- Hu S., Rao M., Lei H., Wu Y., Wang Y., Ke D., Xia W., Zhu C. (2017). Expression patterns of p38αMAPK during follicular development in the ovaries of neonatal rats. Acta Histochem., 119: 538–542.10.1016/j.acthis.2017.05.00728606727
- Johnson A.L. (2003). Intracellular mechanisms regulating cell survival in ovarian follicles. Anim. Reprod. Sci., 78: 185–201.10.1016/S0378-4320(03)00090-3
- Johnson A.L. (2014). The avian ovary and follicle development: some comparative and practical insights. Turk. J. Vet. Anim. Sci., 38: 660–669.10.3906/vet-1405-6
- Johnson P.A. (2012) Follicle selection in the avian ovary. Reprod. Domest. Anim., 47: 283–287.10.1111/j.1439-0531.2012.02087.x22827382
- Koul H.K., Pal M., Koul S. (2013). Role of p38 MAP kinase signal transduction in solid tumors. Genes Cancer, 4: 342–359.10.1177/1947601913507951386334424349632
- Li Z., Zhao L., Hang H., Zhu N., Ning B., Lv Z. (2013). Spatiotemporal patterns and essential role of MSK1 expression after rat spinal cord injury. Neurochem. Res., 38: 2581–2587.10.1007/s11064-013-1174-124142296
- Liu C.L., Chen S.F., Wu M.Z., Jao S.W., Lin Y.S., Yang C.Y., Lee T.Y., Wen L.W., Lan G.L., Nieh S. (2016). The molecular and clinical verification of therapeutic resistance via the p38 MAPK–Hsp27 axis in lung cancer. Oncotarget, 7: 14279.10.18632/oncotarget.7306492471426872057
- Liu J.J., Ma Xi., Cai L.B., Cui Y.G., Liu J.Y. (2010). Downregulation of both gene expression and activity of Hsp27 improved maturation of mouse oocyte in vitro. Reprod. Biol. Endocrinol., 8: 47–47.10.1186/1477-7827-8-47289061120465849
- Liu Y., Beyer A., Aebersold R. (2016). On the dependency of cellular protein levels on mRNA abundance. Cell, 165: 535–550.10.1016/j.cell.2016.03.01427104977
- Matsuda F., Inoue N., Manabe N., Ohkura S. (2012). Follicular growth and atresia in mammalian ovaries: regulation by survival and death of granulosa cells. J. Reprod. Dev., 58: 44–50.10.1262/jrd.2011-01222450284
- Miyagaki Y., Kanemori Y., Baba T. (2011). Possible involvement of mitogen-and stress-activated protein kinase 1, MSK1, in metaphase-II arrest through phosphorylation of EMI2 in mouse oocytes. Dev. Biol., 359: 73–81.10.1016/j.ydbio.2011.08.02121924255
- Moreira F., Corcini C.D., Mondadori R.G., Gevehr-Fernandes C., Mendes F.F., Araujo E.G., Lucia Jr T. (2013). Leptin and mitogen-activated protein kinase (MAPK) in oocytes of sows and gilts. Anim. Reprod. Sci., 139: 89–94.10.1016/j.anireprosci.2013.03.01123602489
- Ning B., Li Z., Zhu N., Hou G., Pang Q. (2013). Traumatic brain injury induces a downregulation of MSK1 in rat brain cortex. J. Mol. Neurosci., 49: 380–386.10.1007/s12031-012-9893-323065332
- Ning B., Guo G., Liu H., Ning L., Sun B.L., Li Z., Wang S., Lv Z.W., Fan C.D. (2017). MSK1 downregulation is associated with neuronal and astrocytic apoptosis following subarachnoid hemorrhage in rats. Oncol. Lett., 14: 2940–2946.10.3892/ol.2017.6496558810728927047
- Pavan S., Musiani D., Torchiaro E., Migliardi G., Gai M., Di Cunto F., Erriquez J., Olivero M., Di Renzo M.F. (2014). HSP27 is required for invasion and metastasis triggered by hepatocyte growth factor. Int. J. Cancer, 134: 1289–1299.10.1002/ijc.2846423996744
- Reyskens K.M., Arthur J.S.C. (2016). Emerging roles of the mitogen and stress activated kinases MSK1 and MSK2. Front. Cell Dev. Biol., 4: 56.10.3389/fcell.2016.00056490104627376065
- Richani D., Gilchrist R.B. (2017). The epidermal growth factor network: role in oocyte growth, maturation and developmental competence. Hum Reprod. update, 24: 1–14.10.1093/humupd/dmx02929029246
- Velázquez M.M., Alfaro N.S., Dupuy C.R., Salvetti N.R., Rey F., Ortega H.H. (2010). Heat shock protein patterns in the bovine ovary and relation with cystic ovarian disease. Anim. Reprod. Sci., 118: 201–209.10.1016/j.anireprosci.2009.08.01019744807
- Velázquez M.M., Alfaro N.S., Salvetti N.R., Stangaferro M.L., Rey F., Panzani C.G., Ortega H.H. (2011). Levels of heat shock protein transcripts in normal follicles and ovarian follicular cysts. Reprod. Biol., 11: 276–283.10.1016/S1642-431X(12)60072-2
- Velázquez M.M., Salvetti N.R., Amweg A.N., Díaz P.U., Matiller V., Ortega H.H. (2013). Changes in the expression of Heat Shock Proteins in ovaries from bovines with cystic ovarian disease induced by ACTH. Res. Vet. Sci., 95: 1059–1067.10.1016/j.rvsc.2013.07.01223937990
- Wang C., Liu Y., Zhang J., Wang H.Y., Wu H.L., Gong S.M., He D.Q. (2014). Molecular cloning, expression and polymorphism of goose LRP8 gene. Brit. Poultry Sci., 55: 284–90.10.1080/00071668.2014.90450124673343
- Wang Y., Chen Q., Liu Z., Guo X., Du Y., Yuan Z., Guo M., Kang L., Sun Y., Jiang Y. (2017). Transcriptome analysis on single small yellow follicles reveals that Wnt4 is involved in chicken follicle selection. Front. Endocrinol., 8: 317.10.3389/fendo.2017.00317569475229187833
- Young J.M., Mc Neilly A.S. (2010). Theca: the forgotten cell of the ovarian follicle. Reproduction, 140: 489–504.10.1530/REP-10-009420628033
- Yu J., Lou Y., Zhao A. (2016). Transcriptome analysis of follicles reveals the importance of autophagy and hormones in regulating broodiness of Zhedong white goose. Sci. Rep., 6: 36877.10.1038/srep36877510508527833138
- Zhang X., Kang B., Na Zhang L., Ru Guo Ji., Mei Jiang D., Ji H., Zhen L., Min Yang H. (2013). Gene expression profiles of LH, prolactin and their receptors in female Zi geese (Anser cygnoides) during development. Folia Biol., 61: 59–64.10.3409/fb61_1-2.5923767294