Atanasoski Suzana, Boentert Matthias, De Ventura Lukas, Pohl Hartmut, Baranek Constanze, Beier Konstantin, Young Peter, Barbacid Mariano, Suter Ueli
Institute of Cell Biology, ETH Zurich, Zurich, Switzerland.
Mol Cell Neurosci. 2008 Mar;37(3):519-27. doi: 10.1016/j.mcn.2007.11.005. Epub 2007 Nov 24.
Peripheral myelin formation depends on axonal signals that tightly control proliferation and differentiation of the associated Schwann cells. Here we demonstrate that the molecular program controlling proliferation of Schwann cells switches at birth. We have analyzed the requirements for three members of the cyclin-dependent kinase (cdk) family in Schwann cells using cdk-deficient mice. Mice lacking cdk4 showed a drastic decrease in the proliferation rate of Schwann cells at postnatal days 2 and 5, but proliferation was unaffected at embryonic day 18. In contrast, ablation of cdk2 and cdk6 had no significant influence on postnatal Schwann cell proliferation. Taken together, these findings indicate that postnatal Schwann cell proliferation is uniquely controlled by cdk4. Despite the lack of the postnatal wave of Schwann cell proliferation, axons were normally myelinated in adult cdk4-deficient sciatic nerves. Following nerve injury, Schwann cells lacking cdk4 were unable to re-enter the cell cycle, while Schwann cells deficient in cdk2 or cdk6 displayed proliferation rates comparable to controls. We did not observe compensatory effects such as elevated cdk4 levels in uninjured or injured nerves of cdk2 or cdk6-deficient mice. Our data demonstrate that prenatal and postnatal Schwann cell proliferation are driven by distinct molecular cues, and that postnatal proliferation is not a prerequisite for the generation of Schwann cell numbers adequate for correct myelination.
外周髓鞘形成依赖于轴突信号,这些信号严格控制相关施万细胞的增殖和分化。在此,我们证明控制施万细胞增殖的分子程序在出生时发生转变。我们利用缺乏细胞周期蛋白依赖性激酶(cdk)的小鼠,分析了cdk家族三个成员在施万细胞中的需求情况。缺乏cdk4的小鼠在出生后第2天和第5天时施万细胞的增殖率急剧下降,但在胚胎第18天时增殖不受影响。相比之下,敲除cdk2和cdk6对出生后施万细胞的增殖没有显著影响。综上所述,这些发现表明出生后施万细胞的增殖由cdk4独特控制。尽管缺乏出生后施万细胞增殖波,但在成年cdk4缺陷型坐骨神经中轴突正常髓鞘化。神经损伤后,缺乏cdk4的施万细胞无法重新进入细胞周期,而缺乏cdk2或cdk6的施万细胞显示出与对照组相当的增殖率。我们没有在cdk2或cdk6缺陷型小鼠的未损伤或损伤神经中观察到诸如cdk4水平升高的代偿效应。我们的数据表明,产前和产后施万细胞增殖由不同的分子线索驱动,并且产后增殖不是产生足以进行正确髓鞘化的施万细胞数量的先决条件。