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Doublecortin is required in mice for lamination of the hippocampus but not the neocortex.在小鼠中,双皮质素对于海马体的分层是必需的,但对于新皮质则不是。
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本文引用的文献

1
Two new mutants, 'trembler' and 'reeler', with neurological actions in the house mouse (Mus musculus L.).家鼠(小家鼠)中具有神经学效应的两个新突变体,“颤抖者”和“旋转者”。
J Genet. 1951 Jan;50(2):192-201. doi: 10.1007/BF02996215.
2
ANALYSIS OF THE POSTNATAL DEVELOPMENTAL EFFECTS OF "REELER," A NEUROLOGICAL MUTATION IN MICE. A STUDY IN DEVELOPMENTAL GENETICS.
Dev Biol. 1963 Oct;8:165-85. doi: 10.1016/0012-1606(63)90040-x.
3
Cerebellar disorganization characteristic of reeler in scrambler mutant mice despite presence of reelin.尽管存在reelin,但爬行突变小鼠中仍具有reeler所特有的小脑结构紊乱特征。
J Neurosci. 1997 Nov 15;17(22):8767-77. doi: 10.1523/JNEUROSCI.17-22-08767.1997.
4
Neuronal position in the developing brain is regulated by mouse disabled-1.发育中大脑的神经元位置由小鼠失活-1调控。
Nature. 1997 Oct 16;389(6652):733-7. doi: 10.1038/39607.
5
Scrambler and yotari disrupt the disabled gene and produce a reeler-like phenotype in mice.Scrambler和yotari破坏了残疾基因,并在小鼠中产生了类似reeler的表型。
Nature. 1997 Oct 16;389(6652):730-3. doi: 10.1038/39601.
6
Radial glial cell development and transformation are disturbed in reeler forebrain.在reeler小鼠前脑中,放射状胶质细胞的发育和转化受到干扰。
J Neurobiol. 1997 Oct;33(4):459-72. doi: 10.1002/(sici)1097-4695(199710)33:4<459::aid-neu9>3.0.co;2-9.
7
Aberrant splicing of a mouse disabled homolog, mdab1, in the scrambler mouse.在“扰乱者”小鼠中,小鼠失活同源基因mdab1的异常剪接。
Neuron. 1997 Aug;19(2):239-49. doi: 10.1016/s0896-6273(00)80936-8.
8
Abnormal reorganization of preplate neurons and their associated extracellular matrix: an early manifestation of altered neocortical development in the reeler mutant mouse.前板神经元及其相关细胞外基质的异常重组:reeler突变小鼠新皮质发育改变的早期表现。
J Comp Neurol. 1997 Feb 10;378(2):173-9. doi: 10.1002/(sici)1096-9861(19970210)378:2<173::aid-cne2>3.0.co;2-0.
9
Linkage and physical mapping of X-linked lissencephaly/SBH (XLIS): a gene causing neuronal migration defects in human brain.
Hum Mol Genet. 1997 Apr;6(4):555-62. doi: 10.1093/hmg/6.4.555.
10
Mice lacking p35, a neuronal specific activator of Cdk5, display cortical lamination defects, seizures, and adult lethality.缺乏p35(一种Cdk5的神经元特异性激活剂)的小鼠表现出皮质分层缺陷、癫痫发作和成年期致死性。
Neuron. 1997 Jan;18(1):29-42. doi: 10.1016/s0896-6273(01)80044-1.

“扰乱蛋白”的出生日期及细胞标志物分析:一种影响皮质发育并具有类Reeler表型的新型突变。

Birthdate and cell marker analysis of scrambler: a novel mutation affecting cortical development with a reeler-like phenotype.

作者信息

González J L, Russo C J, Goldowitz D, Sweet H O, Davisson M T, Walsh C A

机构信息

Division of Neurogenetics, Department of Neurology, Beth Israel Deaconess Medical Center, and Program in Neuroscience, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Neurosci. 1997 Dec 1;17(23):9204-11. doi: 10.1523/JNEUROSCI.17-23-09204.1997.

DOI:10.1523/JNEUROSCI.17-23-09204.1997
PMID:9364067
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6573592/
Abstract

The reeler mutation in mice produces an especially well characterized disorder, with systematically abnormal migration of cerebral cortical neurons. The reeler gene encodes a large protein, termed Reelin, that in the cortex is synthesized and secreted exclusively in the Cajal-Retzius neurons of the cortical marginal zone (D'Arcangelo et al., 1995). In reeler mutant mice, loss of Reelin protein is associated with a systematic loss of the normal, "inside-out" sequence of neurogenesis in the cortex: neurons are formed in the normal sequence but become localized in the cortex in a somewhat inverted, although relatively disorganized "outside-in" pattern. Here we show that the scrambler mutant mouse exhibits a loss of lamination in the cortex and hippocampus that is indistinguishable from that seen in the reeler mouse. We use BrdU birthdating studies to show that scrambler cortex shows a somewhat inverted "outside-in" sequence of birthdates for cortical neurons that is similar to that previously described in reeler cortex. Finally, we perform staining with the CR-50 monoclonal antibody (Ogawa et al., 1995), which recognizes the Reelin protein (D'Arcangelo et al., 1997). We show that Reelin immunoreactivity is present in the scrambler cortex in a normal pattern, suggesting that Reelin is synthesized and released normally. Our data suggest that scrambler is a mutation in the same gene pathway as the reeler gene (Relnrl) and is most likely downstream of Relnrl.

摘要

小鼠中的reeler突变会导致一种特征特别明显的疾病,其大脑皮质神经元的迁移存在系统性异常。reeler基因编码一种名为Reelin的大型蛋白质,在皮质中,它仅在皮质边缘区的卡哈尔-雷茨乌斯神经元中合成并分泌(达·安杰洛等人,1995年)。在reeler突变小鼠中,Reelin蛋白的缺失与皮质中正常的“由内向外”神经发生顺序的系统性丧失有关:神经元按正常顺序形成,但在皮质中定位时呈现出某种倒置的、尽管相对无序的“由外向内”模式。在这里,我们表明scrambler突变小鼠在皮质和海马体中表现出的分层缺失与reeler小鼠中观察到的情况无法区分。我们使用BrdU出生时间标记研究表明,scrambler皮质中皮质神经元的出生日期呈现出某种倒置的“由外向内”顺序,这与之前在reeler皮质中描述的情况相似。最后,我们用CR - 50单克隆抗体(小川等人,1995年)进行染色,该抗体可识别Reelin蛋白(达·安杰洛等人,1997年)。我们发现scrambler皮质中存在正常模式的Reelin免疫反应性,这表明Reelin的合成和释放正常。我们的数据表明,scrambler是与reeler基因(Relnrl)处于同一基因途径的突变,并且很可能位于Relnrl的下游。