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nuclear androgen receptor binding
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GO_0050681 |
[Binding to a nuclear androgen receptor.] |
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sperm nuclear envelope removal
|
GO_0035040 |
[Removal of the sperm nuclear envelope, allowing entry of maternal factors into the sperm nucleus.] |
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nuclear membrane disassembly
|
GO_0051081 |
[The controlled breakdown of the nuclear membranes, for example during cellular division.] |
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ectoderm formation
|
GO_0001705 |
[The formation of ectoderm during gastrulation.] |
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AF-2 domain binding
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GO_0050682 |
[Binding to an AF-2 protein domain, a highly conserved ligand-dependent transactivation domain which is essential for receptor-mediated transcriptional activation.] |
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endoderm formation
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GO_0001706 |
[The formation of the endoderm during gastrulation.] |
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AF-1 domain binding
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GO_0050683 |
[Binding to an AF-1 protein domain, a ligand-independent transactivation domain which is required for the full transcriptional activity of the receptor.] |
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gastrulation
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GO_0007369 |
[A complex and coordinated series of cellular movements that occurs at the end of cleavage during embryonic development of most animals. The details of gastrulation vary from species to species, but usually result in the formation of the three primary germ layers, ectoderm, mesoderm and endoderm.] |
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male pronuclear envelope synthesis
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GO_0035043 |
[Assembly of a nuclear envelope containing nuclear pores and a lamina around the male pronucleus, the final step in sperm pronuclear formation.] |
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sperm aster formation
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GO_0035044 |
[Formation and organization of an aster composed of microtubule arrays originating from the sperm basal body and extending virtually to the egg periphery. The sperm aster ensures the appropriate positioning of the male and female pronuclei.] |
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in utero embryonic development
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GO_0001701 |
[The process whose specific outcome is the progression of the embryo in the uterus over time, from formation of the zygote in the oviduct, to birth. An example of this process is found in Mus musculus.] |
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chordate embryonic development
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GO_0043009 |
[The process whose specific outcome is the progression of the embryo over time, from zygote formation through a stage including a notochord and neural tube until birth or egg hatching.] |
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seryl-selenocysteinyl-tRNA kinase activity
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GO_0098620 |
[Catalysis of the reaction: Ser-tRNA(Sec) + ATP = Sep-tRNA(Sec) + ADP.] |
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sperm DNA decondensation
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GO_0035041 |
[Unwinding of the condensed nuclear chromatin of an inactive male pronucleus after fertilization.] |
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gastrulation with mouth forming second
|
GO_0001702 |
[A gastrulation process in which the initial invagination becomes the anus and the mouth forms second.] |
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O-phosphoseryl-tRNA(Sec) selenium transferase activity
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GO_0098621 |
[Catalysis of the reaction: O-phospho-L-seryl-tRNA(Sec) + selenophosphate + H2O = L-selenocysteinyl-tRNA(Sec) + 2 phosphate.] |
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obsolete fertilization, exchange of chromosomal proteins
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GO_0035042 |
[OBSOLETE. Replacement of sperm-specific chromosomal proteins with somatic histones, to allow the paternal genome to acquire a nucleosomal chromatin organization compatible with nuclear activity.] |
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regulation of defense response to virus
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GO_0050688 |
[Any process that modulates the frequency, rate or extent of the antiviral response of a cell or organism.] |
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selenodiglutathione-disulfide reductase (NADPH) activity
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GO_0098622 |
[Catalysis of the reaction: H+ + selenodiglutathione + NADPH = gluthathioselenol + glutathione + NADP+.] |
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disulfide oxidoreductase activity
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GO_0015036 |
[Catalysis of the reaction: substrate with reduced sulfide groups = substrate with oxidized disulfide bonds.] |