Dautigny A, Mattei M G, Morello D, Alliel P M, Pham-Dinh D, Amar L, Arnaud D, Simon D, Mattei J F, Guenet J L
Nature. 1986;321(6073):867-9. doi: 10.1038/321867a0.
Mutations affecting developmental processes may allow some insight into the complexity of the biological processes involved. In mice, two mutants that affect myelin formation in the central nervous system, jimpy and shiverer, have proved to be useful models for the study of this process. The predominant proteins in myelin are the major myelin proteolipid (PLP) and the myelin basic proteins (MBP), which together account for 80-90% of total myelin proteins. It has recently been shown that the shiverer mutation is located in the MBP structural gene, but the site of the jimpy mutation, which is X-chromosome-linked and may be similar to the sex-linked dismyelinization human disease, Pelizaeus-Merzbacher disease, remains unclear. Here we provide evidence, based on a combined genetic and biochemical approach, that the sex-linked recessive mutation jimpy is located in the structural gene coding for PLP.
影响发育过程的突变可能有助于深入了解相关生物过程的复杂性。在小鼠中,两种影响中枢神经系统髓鞘形成的突变体——“跳跃者”(jimpy)和“颤抖者”(shiverer),已被证明是研究这一过程的有用模型。髓鞘中的主要蛋白质是主要髓鞘蛋白脂蛋白(PLP)和髓鞘碱性蛋白(MBP),它们共同占髓鞘总蛋白的80 - 90%。最近有研究表明,“颤抖者”突变位于MBP结构基因中,但“跳跃者”突变的位置尚不清楚,该突变与X染色体连锁,可能类似于性连锁脱髓鞘人类疾病——佩利措伊斯-梅茨巴赫病(Pelizaeus-Merzbacher disease)。在此,我们基于遗传和生化相结合的方法提供证据,表明性连锁隐性突变“跳跃者”位于编码PLP的结构基因中。