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Different patterns of changes between actin dynamics and synaptic density in the rat's primary visual cortex during a special period of visual development

机译:在视觉开发特殊时期,大鼠原发性视觉皮层肌动蛋白动力学和突触密度的不同模式

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In our previous study, we found that the normalized levels of the synaptosomal filament actin (F-actin) to monomeric global actin (G-actin) ratio in the primary visual cortex (Vi) of rats was significantly lower on postnatal day (P) 45 compared with P30, however, the synaptic density in the monocular area of primary visual cortex (V1M) maintained a stable high level from P30 to P45. The mechanisms underlying the different patterned of change in synaptic density and actin rearrangements from P30 to P45 are unclear. During visual development, there is a synaptic pruning process in the binocular segment of primates' visual cortex (V1B) and we suppose the pruning activity may contribute to the decreased synaptosomal F-actin to G-actin ratio. To address this issue, first, samples were derived from the region of V1B for TEM analysis but no significant difference was demonstrated between the P30 and P45 groups. In addition, the expression of PSD-95 detected by immunobloting in the synaptosomes of V1 at P30 and P45 also showed no significant difference. Combined with the previous results of actin dynamics in the V1 and synaptic density in the V1M, we conclude that the synaptic density and actin dynamics in the rats' primary visual cortex are inter-related but not absolutely identical. This study suggests actin cytoskeleton not only provides the structural basis but also regulates a various array of cellular activities underlying synaptic function. Besides, it highlights a further research of synaptic pruning.
机译:在我们以前的研究中,我们发现产后后,大鼠初级视觉皮质(VI)中的单体全球肌动蛋白(F-Actin)的标准化水平为大鼠的主要视觉皮质(VI)中显着降低(P)然而,与P30相比,初级视觉皮质(V1M)单像素面积中的突触密度从P30到P45保持稳定的高水平。从P30到P45的突触密度变化和肌动蛋白重排的不同图案的机制尚不清楚。在视觉开发期间,在灵长类动物的视觉皮质(V1B)的双目段中存在突触修剪过程,并且我们假设修剪活性可能有助于降低的突触体F-actin至G-actin比率。为了解决这个问题,首先,从V1B的区域衍生出样品进行TEM分析,但P30和P45组之间没有显着差异。另外,在P30和P45的V1的突触体中检测到通过免疫印迹检测的PSD-95的表达也显示出没有显着差异。结合在V1M中V1和突触密度的肌动蛋白动态的先前结果,我们得出结论,大鼠原发性视觉皮层中的突触密度和肌动蛋白动态是相关的,但不是绝对相同的。本研究表明,肌动蛋白细胞骨架不仅提供结构基础,而且还调节突触功能下面的各种细胞活动阵列。此外,它突出了突触修剪的进一步研究。

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