Mutations in PLCZ1 induce male infertility associated with polyspermy and fertilization failure
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Xiaoyu Yang | Jiayin Liu | Yugui Cui | F. Diao | Kai Deng | Jiandong Shen | Yawen Peng | Yuting Lin
[1] Ling-bo Cai,et al. Nucleoporin37 may play a role in early embryo development in human and mice. , 2022, Molecular human reproduction.
[2] Ling-bo Cai,et al. Novel bi-allelic variants in ACTL7A are associated with male infertility and total fertilization failure. , 2021, Human reproduction.
[3] G. Lin,et al. Homozygous pathogenic variants in ACTL9 cause fertilization failure and male infertility in humans and mice. , 2021, American journal of human genetics.
[4] F. Zhang,et al. Disruption in ACTL7A causes acrosomal ultrastructural defects in human and mouse sperm as a novel male factor inducing early embryonic arrest , 2020, Science Advances.
[5] Liying Yan,et al. A novel homozygous mutation of phospholipase C zeta leading to defective human oocyte activation and fertilization failure. , 2020, Human reproduction.
[6] J. Evans. Preventing polyspermy in mammalian eggs—Contributions of the membrane block and other mechanisms , 2020, Molecular reproduction and development.
[7] Ling Wu,et al. Novel mutations in PLCZ1 cause male infertility due to fertilization failure or poor fertilization. , 2020, Human reproduction.
[8] Ling Wu,et al. The identification of novel mutations in PLCZ1 responsible for human fertilization failure and a therapeutic intervention by artificial oocyte activation. , 2020, Molecular human reproduction.
[9] Anne E. Carlson,et al. Ion channels and signaling pathways used in the fast polyspermy block , 2020, Molecular reproduction and development.
[10] G. Lin,et al. Novel homozygous variations in PLCZ1 lead to poor or failed fertilization characterized by abnormal localization patterns of PLCζ in sperm , 2019, Clinical genetics.
[11] M. Avella,et al. The molecular mechanisms mediating mammalian fertilization , 2019, Development.
[12] R. Vassena,et al. Novel phospholipase C zeta 1 mutations associated with fertilization failures after ICSI. , 2019, Human reproduction.
[13] M. Ikawa,et al. Sperm-borne phospholipase C zeta-1 ensures monospermic fertilization in mice , 2018, Scientific Reports.
[14] Andrew R. Bassett,et al. PLCζ is the physiological trigger of the Ca2+ oscillations that induce embryogenesis in mammals but conception can occur in its absence , 2017, Development.
[15] Eric W. Roth,et al. Zinc sparks induce physiochemical changes in the egg zona pellucida that prevent polyspermy. , 2017, Integrative biology : quantitative biosciences from nano to macro.
[16] J. Dean,et al. A Unique Egg Cortical Granule Localization Motif Is Required for Ovastacin Sequestration to Prevent Premature ZP2 Cleavage and Ensure Female Fertility in Mice , 2017, PLoS genetics.
[17] B. Heindryckx,et al. Effect of two assisted oocyte activation protocols used to overcome fertilization failure on the activation potential and calcium releasing pattern. , 2016, Fertility and sterility.
[18] M. Yeste,et al. Oocyte activation deficiency: a role for an oocyte contribution? , 2016, Human reproduction update.
[19] K. Iwata,et al. Diagnosis of abnormal human fertilization status based on pronuclear origin and/or centrosome number , 2015, Journal of Assisted Reproduction and Genetics.
[20] Michael J E Sternberg,et al. The Phyre2 web portal for protein modeling, prediction and analysis , 2015, Nature Protocols.
[21] J. Laven,et al. Paternal heterochromatin formation in human embryos is H3K9/HP1 directed and primed by sperm-derived histone modifications , 2014, Nature Communications.
[22] Jin-ho Lim,et al. Analysis of clinical outcomes with respect to spermatozoan origin after artificial oocyte activation with a calcium ionophore , 2013, Journal of Assisted Reproduction and Genetics.
[23] D. Clift,et al. Restarting life: fertilization and the transition from meiosis to mitosis , 2013, Nature Reviews Molecular Cell Biology.
[24] Ling-bo Cai,et al. Successful PGD for late infantile neuronal ceroid lipofuscinosis achieved by combined chromosome and TPP1 gene analysis. , 2013, Reproductive biomedicine online.
[25] K. Coward,et al. Oocyte activation and phospholipase C zeta (PLCζ): diagnostic and therapeutic implications for assisted reproductive technology , 2012, Cell Communication and Signaling.
[26] Y. Iwao. Egg activation in physiological polyspermy. , 2012, Reproduction.
[27] B. Rosenbusch. A preliminary concept, deduced from cytogenetic analyses, for explaining different types of multipronuclear oocytes obtained after intracytoplasmic sperm injection. , 2010, Fertility and sterility.
[28] M. DePristo,et al. The Genome Analysis Toolkit: a MapReduce framework for analyzing next-generation DNA sequencing data. , 2010, Genome research.
[29] H. Hakonarson,et al. ANNOVAR: functional annotation of genetic variants from high-throughput sequencing data , 2010, Nucleic acids research.
[30] A. Salicioni,et al. Human sperm devoid of PLC, zeta 1 fail to induce Ca(2+) release and are unable to initiate the first step of embryo development. , 2008, The Journal of clinical investigation.
[31] Allison J. Gardner,et al. Mammalian membrane block to polyspermy: new insights into how mammalian eggs prevent fertilisation by multiple sperm. , 2006, Reproduction, Fertility and Development.
[32] Z. Kouchi,et al. The Role of EF-hand Domains and C2 Domain in Regulation of Enzymatic Activity of Phospholipase Cζ* , 2005, Journal of Biological Chemistry.
[33] F. A. Lai,et al. PLC zeta: a sperm-specific trigger of Ca(2+) oscillations in eggs and embryo development. , 2002, Development.
[34] J. Egozcue,et al. Diploid sperm and the origin of triploidy. , 2002, Human reproduction.
[35] K. Sterzik,et al. The chromosomal constitution of multipronuclear zygotes resulting from in-vitro fertilization. , 1997, Human reproduction.
[36] K Schulten,et al. VMD: visual molecular dynamics. , 1996, Journal of molecular graphics.
[37] B. Bavister,et al. A cell surface block to polyspermy occurs in golden hamster eggs. , 1988, Developmental biology.
[38] K. Sato. Polyspermy-preventing mechanisms in mouse eggs fertilized in vitro. , 1979, The Journal of experimental zoology.
[39] L. Blayney,et al. PLC ζ : a sperm-specific trigger of Ca 2 + oscillations in eggs and embryo development , 2022 .