Wöhrle D, Hennig I, Vogel W, Steinbach P
Abteilung Klinische Genetik, Universität Ulm, Germany.
Nat Genet. 1993 Jun;4(2):140-2. doi: 10.1038/ng0693-140.
We demonstrate here that somatic variation of CGG repeat length is based on a mosaic of cells with different but stable FMR-1 alleles and does not reflect permanent mitotic instability. The length of a particular allele in an individual cell was maintained in progeny cells establishing a clone. The mutation patterns of multiple repeats in the DNA of fetal tissues were identical and did not significantly change during proliferation in vitro. It is proposed that genotype mosaicism and expansion to full mutation are generated post-conceptionally by the same molecular mechanism in a particular window of early development.
我们在此证明,CGG重复序列长度的体细胞变异基于具有不同但稳定的FMR-1等位基因的细胞镶嵌,并不反映永久性有丝分裂不稳定性。单个细胞中特定等位基因的长度在建立克隆的后代细胞中得以维持。胎儿组织DNA中多个重复序列的突变模式相同,且在体外增殖过程中无显著变化。有人提出,基因型镶嵌现象和向完全突变的扩展是在受孕后由早期发育特定窗口中的相同分子机制产生的。