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1
Steel mutant mice are deficient in hippocampal learning but not long-term potentiation.钢铁突变小鼠在海马体学习方面存在缺陷,但在长时程增强方面没有缺陷。
Proc Natl Acad Sci U S A. 1996 Mar 5;93(5):1808-13. doi: 10.1073/pnas.93.5.1808.
2
The kit-ligand (steel factor) and its receptor c-kit/W: pleiotropic roles in gametogenesis and melanogenesis.干细胞因子及其受体c-kit/W:在配子发生和黑色素生成中的多效性作用。
Dev Suppl. 1993:125-37.
3
Contiguous patterns of c-kit and steel expression: analysis of mutations at the W and Sl loci.c-kit与Steel表达的连续模式:W和Sl位点突变分析
Development. 1991 Dec;113(4):1207-21. doi: 10.1242/dev.113.4.1207.
4
Myristoylated alanine rich C kinase substrate (MARCKS) heterozygous mutant mice exhibit deficits in hippocampal mossy fiber-CA3 long-term potentiation.肉豆蔻酰化富含丙氨酸的蛋白激酶C底物(MARCKS)杂合突变小鼠在海马苔藓纤维-CA3长期增强方面表现出缺陷。
Hippocampus. 2006;16(5):495-503. doi: 10.1002/hipo.20177.
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Impairment of spatial learning and hippocampal synaptic potentiation in c-kit mutant rats.c-kit突变大鼠的空间学习和海马突触增强受损。
Learn Mem. 2000 Nov-Dec;7(6):383-92. doi: 10.1101/lm.33900.
6
A presynaptic locus for long-term potentiation of elementary synaptic transmission at mossy fiber synapses in culture.培养的苔藓纤维突触处初级突触传递长时程增强的突触前位点。
Proc Natl Acad Sci U S A. 1996 May 14;93(10):4712-7. doi: 10.1073/pnas.93.10.4712.
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Dynamic changes in ovarian c-kit and Steel expression during the estrous reproductive cycle.发情生殖周期中卵巢c-kit和Steel表达的动态变化。
Dev Dyn. 1993 May;197(1):69-79. doi: 10.1002/aja.1001970107.
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The kit receptor and its ligand, steel factor, as regulators of hemopoiesis.作为造血调节因子的干细胞因子受体及其配体——干细胞因子
Cancer Cells. 1991 Dec;3(12):480-7.
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Incidence and distribution of experimental metastases in mutant mice with defective organ microenvironments (genotypes Sl/Sld and W/Wv).具有缺陷器官微环境的突变小鼠(基因型Sl/Sld和W/Wv)中实验性转移的发生率和分布情况。
Cancer Res. 1992 Apr 15;52(8):2304-9.
10
Spatial learning and hippocampal long-term potentiation are not impaired in mdx mice.mdx小鼠的空间学习能力和海马体长期增强效应未受损。
Neurosci Lett. 1996 Jun 28;211(3):207-10. doi: 10.1016/0304-3940(96)12747-6.

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Kit Ligand and Kit receptor tyrosine kinase sustain synaptic inhibition of Purkinje cells.Kit 配体和 Kit 受体酪氨酸激酶维持浦肯野细胞的突触抑制。
Elife. 2024 Mar 27;12:RP89792. doi: 10.7554/eLife.89792.
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Compensatory gene expression potentially rescues impaired brain development in Kit mutant mice.补偿性基因表达可能挽救 Kit 突变小鼠受损的大脑发育。
Sci Rep. 2023 Mar 13;13(1):4166. doi: 10.1038/s41598-023-30032-0.
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Synapse type-specific proteomic dissection identifies IgSF8 as a hippocampal CA3 microcircuit organizer.突触类型特异性蛋白质组学剖析鉴定 IgSF8 为海马 CA3 微电路组织者。
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KIT ligand protects against both light-induced and genetic photoreceptor degeneration.KIT 配体可防止光诱导和遗传型光感受器变性。
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Novel approaches to treating advanced systemic mastocytosis.治疗晚期系统性肥大细胞增多症的新方法。
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Enhancing endogenous capacity to repair a stroke-damaged brain: An evolving field for stroke research.增强内源性修复脑卒中损伤大脑的能力:脑卒中研究的一个不断发展的领域。
Prog Neurobiol. 2018 Apr-May;163-164:5-26. doi: 10.1016/j.pneurobio.2018.01.004. Epub 2018 Feb 21.
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Mast cells increase adult neural precursor proliferation and differentiation but this potential is not realized in vivo under physiological conditions.肥大细胞增加成体神经前体细胞的增殖和分化,但在生理条件下,这种潜能在体内没有实现。
Sci Rep. 2017 Dec 19;7(1):17859. doi: 10.1038/s41598-017-18184-2.
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Turning Death to Growth: Hematopoietic Growth Factors Promote Neurite Outgrowth through MEK/ERK/p53 Pathway.化腐朽为神奇:造血生长因子通过 MEK/ERK/p53 通路促进神经突生长。
Mol Neurobiol. 2018 Jul;55(7):5913-5925. doi: 10.1007/s12035-017-0814-x. Epub 2017 Nov 8.
9
Induced haploinsufficiency of Kit receptor tyrosine kinase impairs brain development.Kit 受体酪氨酸激酶的诱导杂合不足会损害大脑发育。
JCI Insight. 2017 Oct 5;2(19):94385. doi: 10.1172/jci.insight.94385.
10
Late Effect of Developmental Exposure to 3,3'-Iminodipropionitrile on Neurogenesis in the Hippocampal Dentate Gyrus of Mice.发育性暴露于3,3'-亚氨基二丙腈对小鼠海马齿状回神经发生的晚期影响
Neurotox Res. 2017 Jul;32(1):27-40. doi: 10.1007/s12640-017-9703-3. Epub 2017 Feb 6.

本文引用的文献

1
Long-term Potentiation and Field EPSPs in the Lateral and Medial Perforant Paths in the Dentate Gyrus In Vitro: a Comparison.体外齿状回中侧、内侧穿通通路的长时程增强和场兴奋性突触后电位:一项比较研究
Eur J Neurosci. 1992 Oct;4(11):1191-1201. doi: 10.1111/j.1460-9568.1992.tb00144.x.
2
A synaptic model of memory: long-term potentiation in the hippocampus.记忆的突触模型:海马体中的长时程增强效应
Nature. 1993 Jan 7;361(6407):31-9. doi: 10.1038/361031a0.
3
Effects of cAMP simulate a late stage of LTP in hippocampal CA1 neurons.环磷酸腺苷(cAMP)的作用模拟了海马体CA1神经元中长时程增强(LTP)的晚期阶段。
Science. 1993 Jun 11;260(5114):1661-4. doi: 10.1126/science.8389057.
4
Induction of long-term potentiation at perforant path dentate synapses does not affect place learning or memory.在穿通通路齿状突触处诱导长时程增强并不影响空间学习或记忆。
Hippocampus. 1993 Apr;3(2):141-7. doi: 10.1002/hipo.450030206.
5
Cumulative long-term potentiation in the rat dentate gyrus correlates with, but does not modify, performance in the water maze.大鼠齿状回中的累积长期增强效应与水迷宫中的行为表现相关,但并不改变该表现。
Hippocampus. 1993 Apr;3(2):133-40. doi: 10.1002/hipo.450030205.
6
Hippocampal synaptic enhancement and spatial learning in the Morris swim task.莫里斯游泳任务中的海马体突触增强与空间学习
Hippocampus. 1993 Apr;3(2):127-32. doi: 10.1002/hipo.450030204.
7
Hippocampal circuitry complicates analysis of long-term potentiation in mossy fiber synapses.海马回路使苔藓纤维突触中长时程增强的分析变得复杂。
Hippocampus. 1993 Apr;3(2):115-21. doi: 10.1002/hipo.450030202.
8
PKC gamma mutant mice exhibit mild deficits in spatial and contextual learning.蛋白激酶Cγ突变小鼠在空间和情境学习方面表现出轻微缺陷。
Cell. 1993 Dec 31;75(7):1263-71. doi: 10.1016/0092-8674(93)90614-v.
9
Modified hippocampal long-term potentiation in PKC gamma-mutant mice.蛋白激酶Cγ突变小鼠中修饰的海马长时程增强效应
Cell. 1993 Dec 31;75(7):1253-62. doi: 10.1016/0092-8674(93)90613-u.
10
The opioid peptide dynorphin mediates heterosynaptic depression of hippocampal mossy fibre synapses and modulates long-term potentiation.阿片肽强啡肽介导海马苔藓纤维突触的异突触抑制并调节长时程增强。
Nature. 1993 Apr 1;362(6419):423-7. doi: 10.1038/362423a0.

钢铁突变小鼠在海马体学习方面存在缺陷,但在长时程增强方面没有缺陷。

Steel mutant mice are deficient in hippocampal learning but not long-term potentiation.

作者信息

Motro B, Wojtowicz J M, Bernstein A, van der Kooy D

机构信息

Program in Molecular Biology and Cancer, Samuel Lunenfeld Reseaerch Institute, Mount Sinai Hospital, Toronto, Canada.

出版信息

Proc Natl Acad Sci U S A. 1996 Mar 5;93(5):1808-13. doi: 10.1073/pnas.93.5.1808.

DOI:10.1073/pnas.93.5.1808
PMID:8700840
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC39863/
Abstract

Mice carrying mutations in either the dominant white-spotting (W) or Steel (Sl) loci exhibit deficits in melanogenesis, gametogenesis, and hematopoiesis. W encodes the Kit receptor tyrosine kinase, while Sl encodes the Kit ligand, Steel factor, and the receptor-ligand pair are contiguously expressed at anatomical sites expected from the phenotypes of W and Sl mice. The c-kit and Steel genes are also both highly expressed in the adult murine hippocampus: Steel is expressed in dentate gyrus neurons whose mossy fiber axons synapse with the c-kit expressing CA3 pyramidal neurons. We report here that Sl/Sld mutant mice have a specific deficit in spatial learning. These mutant mice are also deficient in baseline synaptic transmission between the dentate gyrus and CA3 but show normal long-term potentiation in this pathway. These observations demonstrate a role for Steel factor/Kit signaling in the adult nervous system and suggest that a severe deficit in hippocampal-dependent learning need not be associated with reduced hippocampal long-term potentiation.

摘要

在显性白斑(W)或Steel(Sl)位点携带突变的小鼠在黑色素生成、配子发生和造血方面表现出缺陷。W编码Kit受体酪氨酸激酶,而Sl编码Kit配体、Steel因子,并且受体-配体对在W和Sl小鼠的表型所预期的解剖部位连续表达。c-kit和Steel基因在成年小鼠海马中也都高度表达:Steel在齿状回神经元中表达,其苔藓纤维轴突与表达c-kit的CA3锥体神经元形成突触。我们在此报告,Sl/Sld突变小鼠在空间学习方面存在特定缺陷。这些突变小鼠在齿状回和CA3之间的基线突触传递也存在缺陷,但在该通路中显示出正常的长时程增强。这些观察结果证明了Steel因子/Kit信号在成年神经系统中的作用,并表明海马依赖性学习的严重缺陷不一定与海马长时程增强的降低相关。