Zhao Xiao-Nan, Lokanga Rachel, Allette Kimaada, Gazy Inbal, Wu Di, Usdin Karen
Section on Gene Structure and Disease, Laboratory of Cell and Molecular Biology, National Institute of Diabetes, Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland, United States of America.
Division of Medical Biochemistry, University of Cape Town Medical School, Cape Town, South Africa.
PLoS Genet. 2016 Jul 18;12(7):e1006190. doi: 10.1371/journal.pgen.1006190. eCollection 2016 Jul.
The fragile X-related disorders result from expansion of a CGG/CCG microsatellite in the 5' UTR of the FMR1 gene. We have previously demonstrated that the MSH2/MSH3 complex, MutSβ, that is important for mismatch repair, is essential for almost all expansions in a mouse model of these disorders. Here we show that the MSH2/MSH6 complex, MutSα also contributes to the production of both germ line and somatic expansions as evidenced by the reduction in the number of expansions observed in Msh6-/- mice. This effect is not mediated via an indirect effect of the loss of MSH6 on the level of MSH3. However, since MutSβ is required for 98% of germ line expansions and almost all somatic ones, MutSα is apparently not able to efficiently substitute for MutSβ in the expansion process. Using purified human proteins we demonstrate that MutSα, like MutSβ, binds to substrates with loop-outs of the repeats and increases the thermal stability of the structures that they form. We also show that MutSα facilitates binding of MutSβ to these loop-outs. These data suggest possible models for the contribution of MutSα to repeat expansion. In addition, we show that unlike MutSβ, MutSα may also act to protect against repeat contractions in the Fmr1 gene.
脆性X相关疾病是由FMR1基因5'非翻译区的CGG/CCG微卫星序列扩增所致。我们之前已经证明,对错配修复很重要的MSH2/MSH3复合物MutSβ,在这些疾病的小鼠模型中,对几乎所有的扩增都是必不可少的。在此我们表明,MSH2/MSH6复合物MutSα也有助于生殖系和体细胞扩增的产生,这在Msh6 - / -小鼠中观察到的扩增数量减少中得到了证实。这种效应不是通过MSH6缺失对MSH3水平的间接影响介导的。然而,由于98%的生殖系扩增和几乎所有的体细胞扩增都需要MutSβ,因此MutSα显然不能在扩增过程中有效地替代MutSβ。使用纯化的人类蛋白质,我们证明MutSα与MutSβ一样,能与具有重复序列环出的底物结合,并增加它们形成的结构的热稳定性。我们还表明,MutSα促进MutSβ与这些环出结构的结合。这些数据提示了MutSα对重复序列扩增作用的可能模型。此外,我们表明,与MutSβ不同,MutSα也可能起到防止Fmr1基因中重复序列收缩的作用。