Vela J M, González B, Castellano B
Department of Cell Biology and Physiology, Faculty of Medicine, Autonomous University of Barcelona, Bellaterra, Spain.
Brain Res Brain Res Rev. 1998 Mar;26(1):29-42. doi: 10.1016/s0165-0173(97)00055-6.
Jimpy is a shortened life-span murine mutant showing recessive sex-linked inheritance. The genetic defect consists of a point mutation in the PLP gene and produces a severe CNS myelin deficiency that is associated with a variety of complex abnormalities affecting all glial populations. The myelin deficiency is primarily due to a failure to produce the normal amount of myelin during development. However, myelin destruction and oligodendrocyte death also account for the drastic myelin deficit observed in jimpy. The oligodendroglial cell line shows complex abnormalities in its differentiation pattern, including the degeneration of oligodendrocytes through an apoptotic mechanism. Oligodendrocytes seem to be the most likely candidate to be primarily altered in a disorder affecting myelination, but disturbances affecting astrocytes and microglia are also remarkable and may have a crucial significance in the development of the jimpy disorder. In fact, the jimpy phenotype may not be attributed to a defect in a single cell but rather to a deficiency in the normal relations between glial cells. Evidences from a variety of sources indicate that the jimpy mutant could be a model for disturbed glial development in the CNS. The accurate knowledge of the significance of PLP and its regulation during development must be of vital importance in order to understand glial abnormalities in jimpy.
Jimpy是一种寿命缩短的小鼠突变体,表现出隐性性连锁遗传。基因缺陷由PLP基因中的一个点突变组成,并导致严重的中枢神经系统髓鞘缺乏,这与影响所有神经胶质细胞群体的各种复杂异常有关。髓鞘缺乏主要是由于在发育过程中未能产生正常量的髓鞘。然而,髓鞘破坏和少突胶质细胞死亡也导致了在Jimpy中观察到的严重髓鞘缺陷。少突胶质细胞系在其分化模式中表现出复杂异常,包括通过凋亡机制导致少突胶质细胞退化。少突胶质细胞似乎是在影响髓鞘形成的疾病中最可能首先发生改变的细胞,但影响星形胶质细胞和小胶质细胞的紊乱也很显著,并且可能在Jimpy疾病的发展中具有关键意义。事实上,Jimpy表型可能并非归因于单个细胞的缺陷,而是神经胶质细胞之间正常关系的缺乏。来自各种来源的证据表明,Jimpy突变体可能是中枢神经系统中神经胶质细胞发育紊乱的模型。为了理解Jimpy中的神经胶质细胞异常,准确了解PLP在发育过程中的意义及其调节至关重要。