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首页> 外文期刊>Cerebral cortex >DMRT5 Together with DMRT3 Directly Controls Hippocampus Development and Neocortical Area Map Formation
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DMRT5 Together with DMRT3 Directly Controls Hippocampus Development and Neocortical Area Map Formation

机译:DMRT5与DMRT3一起直接控制海马开发和新奇地区地图地图

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Mice that are constitutively null for the zinc finger doublesex and mab-3 related (Dmrt) gene, Dmrt5/Dmrta2, show a variety of patterning abnormalities in the cerebral cortex, including the loss of the cortical hem, a powerful cortical signaling center. In conditional Dmrt5 gain of function and loss of function mouse models, we generated bidirectional changes in the neocortical area map without affecting the hem. Analysis indicated that DMRT5, independent of the hem, directs the rostral-to-caudal pattern of the neocortical area map. Thus, DMRT5 joins a small number of transcription factors shown to control directly area size and position in the neocortex. Dmrt5 deletion after hem formation also reduced hippocampal size and shifted the position of the neocortical/paleocortical boundary. Dmrt3, like Dmrt5, is expressed in a gradient across the cortical primordium. Mice lacking Dmrt3 show cortical patterning defects akin to but milder than those in Dmrt5 mutants, perhaps in part because Dmrt5 expression increases in the absence of Dmrt3. DMRT5 upregulates Dmrt3 expression and negatively regulates its own expression, which may stabilize the level of DMRT5. Together, our findings indicate that finely tuned levels of DMRT5, together with DMRT3, regulate patterning of the cerebral cortex.
机译:对锌指双字甲基和MAB-3相关(DMRT)基因,DMRT5 / DMRTA2的小鼠表现出脑皮层中的各种图案化异常,包括皮质下摆,强大的皮质信号中心。在条件DMRT5功能和功能鼠标模型的损失中,我们在NeoCortical区域地图中生成了双向变化而不会影响下摆。分析表明,独立于下摆的DMRT5引导了Neocortical区域地图的朝向尾部。因此,DMRT5加入了少量转录因子,示出控制在Neocortex中的直接区域尺寸和位置。 DMRT5在下摆形成后缺失也降低了海马尺寸并移位了新皮质/古生质边界的位置。像DMRT5一样的DMRT3在皮质原始的梯度中表达。缺乏DMRT3的小鼠显示皮质图案化缺陷,而不是DMRT5突变体中的缺陷,也许部分是因为DMRT5表达在没有DMRT3的情况下增加。 DMRT5上调DMRT3表达并负面调节其自己的表达,这可能稳定DMRT5的水平。我们的研究结果表明,DMRT5的精细调谐水平与DMRT3一起调节脑皮层的图案化。

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