Department of Neuroscience and Center for Neurovirology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.
J Cell Physiol. 2013 Jan;228(1):65-72. doi: 10.1002/jcp.24105.
Pur-alpha is an essential protein for postnatal brain development which localizes specifically to dendrites where it plays a role in the translation of neuronal RNA. Mice lacking Pur-alpha display decreased neuronogenesis and impaired neuronal differentiation. Here we examined two Rho GTPases, Rac1 and RhoA, which play opposing roles in neurite outgrowth and are critical for dendritic maturation during mouse brain development in the presence and absence of Pur-alpha. Pur-alpha is developmentally regulated in the mouse brain with expression beginning shortly after birth and rapidly increasing to peak during the third week of postnatal development. RhoA levels analyzed by Western blotting rapidly fluctuated in the wild-type mouse brain, however, in the absence of Pur-alpha, a decrease in RhoA levels shortly after birth and a delay in the cycling of RhoA regulation was observed leading to reduced basal levels of RhoA after day 10 postnatal. Immunohistochemistry of brain tissues displayed reduced RhoA levels in the cortex and cerebellum and loss of perinuclear cytoplasmic labeling of RhoA within the cortex in the knockout mouse brain. While Rac1 levels remained relatively stable at all time points during development and were similar in both wild-type and Pur-alpha knockout mice, changes in subcellular localization of Rac1 were seen in the absence of Pur-alpha. These findings suggest that Pur-alpha can regulate RhoA at multiple levels including basal protein levels, subcellular compartmentalization, as well as turnover of active RhoA in order to promote dendritic maturation.
Pur-alpha 是一种对出生后大脑发育至关重要的蛋白,它特异性定位于树突,在神经元 RNA 的翻译中发挥作用。缺乏 Pur-alpha 的小鼠显示出神经元生成减少和神经元分化受损。在这里,我们研究了两种 Rho GTPases,Rac1 和 RhoA,它们在神经突生长中发挥相反的作用,并且在 Pur-alpha 存在和不存在的情况下对小鼠大脑发育中的树突成熟至关重要。Pur-alpha 在小鼠大脑中具有发育调节作用,表达始于出生后不久,并在出生后第三周迅速增加至峰值。通过 Western blot 分析的 RhoA 水平在野生型小鼠大脑中迅速波动,然而,在缺乏 Pur-alpha 的情况下,出生后不久 RhoA 水平下降,并且观察到 RhoA 调节的循环延迟,导致出生后第 10 天以后 RhoA 的基础水平降低。大脑组织的免疫组织化学显示 Pur-alpha 敲除小鼠大脑皮层和小脑的 RhoA 水平降低,并且皮层内 RhoA 的核周细胞质标记丢失。虽然 Rac1 水平在发育过程中的所有时间点都保持相对稳定,并且在野生型和 Pur-alpha 敲除小鼠中相似,但在缺乏 Pur-alpha 的情况下,Rac1 的亚细胞定位发生变化。这些发现表明 Pur-alpha 可以在多个水平上调节 RhoA,包括基础蛋白水平、亚细胞区室化以及活性 RhoA 的周转率,以促进树突成熟。