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JOURNAL ARTICLES
Dentate gyrus formation requires Emx2
M. Pellegrini, A. Mansouri, A. Simeone, E. Boncinelli, P. Gruss
Development 1996 122: 3893-3898;
M. Pellegrini
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A. Mansouri
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A. Simeone
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E. Boncinelli
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P. Gruss
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Summary

Emx 1 and 2 are the murine homologues of the Drosophila empty spiracles gene and based on their expression pattern may be involved in the regional specification of the mammalian forebrain. During early embryogenesis, Emx2 is expressed in the presumptive cerebral cortex and olfactory bulbs and later, in the hippocampus proper and dentate gyrus. The latter are involved in memory processes. To understand the role of Emx2 in vivo, we have mutated the gene in mice. Homozygous embryos die postnatally because of severe urogenital alterations. These mice present cerebral hemispheres with a reduced size and exhibit specific morphological alterations in allocortical structures of the medial wall of the brain. The dentate gyrus is missing and the hippocampus proper is reduced. The medial limbic cortex is also severely shortened. The development of the dentate gyrus is affected at the onset of its formation with defects in the neuroepithelium from which it originates. These findings demonstrate that Emx2 is required for the development of several forebrain structures.

Reference

    1. Altman J.,
    2. Bayer S. A.
    (1990) Mosaic organization of the hippocampal neuroepithelium and the multiple germinal sources of dentate granule cells. J. Comp. Neurol 301, 325–342
    OpenUrlCrossRefPubMedWeb of Science
    1. Altman J.,
    2. Bayer S. A.
    (1990) Migration and distribution of two populations of hippocampal granule cells precursors during the perinatal and postnatal periods. J. Comp. Neurol 301, 365–381
    OpenUrlCrossRefPubMedWeb of Science
    1. Alvarez-Bolado G.,
    2. Rosenfeld M. G.,
    3. Swanson L. W.
    (1995) Model of forebrain regionalization based on spatiotemporal patterns of Pou-III homeobox gene expression, birthdates, and morphological features. J. Comp. Neurol 355, 237–295
    OpenUrlCrossRefPubMedWeb of Science
    1. Bliss E. M.,
    2. Lomo T.
    (1973) Long-lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant path. J. Physiol 232, 331–356
    OpenUrl
    1. Brunelli S.,
    2. Faiella A.,
    3. Capra V.,
    4. Nigro V.,
    5. Simeone A.,
    6. Cama A.,
    7. Boncinelli E.
    (1996) Germline mutations in the homeobox gene EMX2 in patients with severe schizencephaly. Nature Genetics 12, 94–96
    OpenUrlCrossRefPubMedWeb of Science
    1. Bunsey M.,
    2. Eichenbaum H.
    (1996) Conservation of hippocampal memory function in rats and humans. Nature 379, 255–257
    OpenUrlCrossRefPubMedWeb of Science
    1. Capecchi M. R.
    (1989) Altering the genome by homologous recombination. Science 244, 1288–1292
    OpenUrlAbstract/FREE Full Text
    1. Caviness V. S., Jr,
    2. Takahashi T.,
    3. Nowakowski R. S.
    (1995) Numbers, time and neocortical neurogenesis: a general developmental and evolutionary model. Trends Neurosci 18, 379–383
    OpenUrlCrossRefPubMedWeb of Science
    1. Chalepakis G.,
    2. Stoykova A.,
    3. Wijnholds J.,
    4. Tremblay P.,
    5. Gruss P.
    (1993) Pax: gene regulators in the developing nervous system. J. Neurobiol 24, 1367–1384
    OpenUrlCrossRefPubMedWeb of Science
    1. Cowan W. N.,
    2. Stanfield B. B.,
    3. Kishi K.
    (1980) The development of the dentate gyrus. Curr. Top. Dev. Biol 15, 103–157
    1. Echelard Y.,
    2. Epstein D. J.,
    3. St-Jacques B.,
    4. Shen L.,
    5. Mphler J.,
    6. McMahon J. A.,
    7. McMahon A. P.
    (1993) Sonic hedgehog, a member of a family of putative signaling molecules, is implicated in the regulation of CNS polarity. Cell 75, 1417–1430
    OpenUrlCrossRefPubMedWeb of Science
    1. Emerich D. F.,
    2. Walsh T. J.
    (1990) Cholinergic cell loss and cognitive impairments following intraventricular or intradentate injection of colchicine. Brain Res 517, 157–167
    OpenUrlCrossRefPubMedWeb of Science
    1. Gulisano M.,
    2. Broccoli V.,
    3. Pardini C.,
    4. Boncinelli E.
    (1996) Emx1 and Emx2 show different patterns of expression during proliferation and differentiation of the developing cerebral cortex. Europ. J. Neurosci 8, 1037–1050
    OpenUrlCrossRefPubMedWeb of Science
    1. Lowenstein D. H.,
    2. Thomas M. J.,
    3. Smith D. H.,
    4. McIntosh T. C.
    (1992) Selective vulnerability of dentate hilar neurons following traumatic brain injury: a potential mechanistic link between head trauma and disorders of the hippocampus. J. Neurosci 12, 4846–4853
    OpenUrlAbstract
    1. McNaughton B. L.,
    2. Barnes C. A.,
    3. Meltzer J.,
    4. Sutherland R. J.
    (1989) Hippocampal granule cells are necessary for normal spatial learning but not for spatially-selective pyramidal cell discharge. Exp. Brain Res 76, 485–496
    OpenUrlCrossRefPubMedWeb of Science
    1. Nagy A.,
    2. Rossant J.,
    3. Nagy R.,
    4. Abramow-Newerly W.,
    5. Roder J. C.
    (1993) Derivation of completely cell culture-derived mice from early-passage embryonic stem cell. Proc. Natl. Acad. Sci. USA 90, 8424–8428
    OpenUrlAbstract/FREE Full Text
    1. Porteus M.,
    2. Bulfone A.,
    3. Ciaranello R. D.,
    4. Rubenstein J. L. R.
    (1991) Isolation and characterization of a novel cDNA clone encoding a homeodomain that is developmentally regulated in the ventral forebrain. Neuron 7, 221–229
    OpenUrlCrossRefPubMedWeb of Science
    1. Price M.,
    2. Lemaistre M.,
    3. Pischetola M.,
    4. Di Lauro R.,
    5. Doboule D.
    (1991) A mouse gene related to Distall-less shows a restricted expression in the developing forebrain. Nature 351, 748–751
    OpenUrlCrossRefPubMed
    1. Price M.,
    2. Lazzaro D.,
    3. Pohl T.,
    4. Mattei M. G.,
    5. Ruther U.,
    6. Olivo J. C.,
    7. Duboule D.
    (1992) Regional expression of the homeobox gene Nkx-2. 2 in the developing mammalian forebrain. Neuron 8, 241–255
    OpenUrlCrossRefPubMedWeb of Science
    1. Rager G.,
    2. Lausmann S.,
    3. Gallyas F.
    (1979) An improved silver stain for developing nervous tissue. Stain Technol 54, 193–199
    OpenUrlPubMedWeb of Science
    1. Rakic P.
    (1995) A small step for the cell, a giant leap for mankind: a hypothesis of neocortical expansion during evolution. Trends Neurosci 18, 383–388
    OpenUrlCrossRefPubMedWeb of Science
    1. Reznikov K. Y.
    (1991) Cell proliferation and cytogenesis in the mouse hippocampus. Adv. Anat. Embryol. Cell Biol 122, 1–74
    OpenUrlPubMed
    1. Shatz C. J.
    (1992) Dividing up the neocortex. Science 258, 237–238
    OpenUrlFREE Full Text
    1. Simeone A.,
    2. Gulisano M.,
    3. Acampora D.,
    4. Stornaiuolo A.,
    5. Rambaldi M.,
    6. Boncinelli E.
    (1992) Two vertebrate homeobox genes related to the Drosophila empty spiracles gene are expressed in the embryonic cerebral cortex. EMBOJ 11, 2541–2550
    OpenUrlPubMedWeb of Science
    1. Simeone A.,
    2. Acampora D.,
    3. Gulisano M.,
    4. Stornaiuolo A.,
    5. Boncinelli E.
    (1992) Nested expression domains of four homeobox genes in developing rostral brain. Nature 358, 687–690
    OpenUrlCrossRefPubMed
    1. Simeone A.,
    2. Acampora D.,
    3. Mallamaci A.,
    4. Stornaiuolo A.,
    5. D'Aprice M. R.,
    6. Nigro V.,
    7. Boncinelli E.
    (1993) A vetebrate gene related to orthodenticle contains a homeodomain of the bicoid class and demarcates anterior neuroectoderm in the gastrulating mouse embryo. EMBOJ 12, 2735–2747
    OpenUrlPubMedWeb of Science
    1. Sloviter R. S.
    (1994) The functional organization of the hippocampal dentate gyrus and its relevance to the pathogenesis of temporal lobe epilepsy. Ann. Neurol 35, 640–654
    OpenUrlCrossRefPubMedWeb of Science
    1. Soriano P.,
    2. Montgomery C.,
    3. Geske R.,
    4. Bradley A.
    (1991) Targeted disruption of the c-src proto-oncogene leads to osteopetrosis in mice. Cell 64, 693–702
    OpenUrlCrossRefPubMedWeb of Science
    1. Squire L. R.,
    2. Zola-Morgan S.
    (1991) The medial temporal lobe memory system. Science 253, 1380–1386
    OpenUrlAbstract/FREE Full Text
    1. Stanfield B. B.,
    2. Cowan W. M.
    (1979) The morphology of the hippocampus and dentate gyrus in normal and reeler mice. J. Comp. Neurol 185, 393–422
    OpenUrlCrossRefPubMedWeb of Science
    1. Stanfield B. B.,
    2. Cowan W. M.
    (1979) The development of the hippocampus and dentate gyrus in normal and reeler mice. J. Comp. Neurol 185, 423–459
    OpenUrlCrossRefPubMedWeb of Science
    1. Stoykova A.,
    2. Gruss P.
    (1994) Roles of Pax -genes in developing and adult brain as suggested by expression pattern. J. Neurosci 14, 1395–1412
    OpenUrlAbstract
    1. Stoykova A.,
    2. Walther C.,
    3. Fritsch R.,
    4. Gruss P.
    (1996) Forebrain patterning defects in Pax6/Small eye mutant mice. Development 122, 3453–3465
    OpenUrlAbstract
    1. Tao W.,
    2. Lai E.
    (1992) Telencephalon-restricted expression of BF-1, a new member of the HNF-3 /fork head gene family, in the developing rat brain. Neuron 8, 957–966
    OpenUrlCrossRefPubMedWeb of Science
    1. Vaher P. R.,
    2. Luine V. N.,
    3. Gould E.,
    4. McEwen B. S.
    (1994) Effects of adrenalectomy on spatial memory performance and dentate gyrus morphology. Brain Res 656, 71–78
    OpenUrlCrossRefPubMedWeb of Science
    1. Xuan S.,
    2. Baptista C. A.,
    3. Balas G.,
    4. Tao W.,
    5. Soares V. C.,
    6. Lai E.
    (1995) Winged helix transcription factor BF-1 is essential for the development of the cerebral hemispheres. Neuron 14, 1141–1152
    OpenUrlCrossRefPubMedWeb of Science
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JOURNAL ARTICLES
Dentate gyrus formation requires Emx2
M. Pellegrini, A. Mansouri, A. Simeone, E. Boncinelli, P. Gruss
Development 1996 122: 3893-3898;
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JOURNAL ARTICLES
Dentate gyrus formation requires Emx2
M. Pellegrini, A. Mansouri, A. Simeone, E. Boncinelli, P. Gruss
Development 1996 122: 3893-3898;

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