VA Center for the Prevention and Treatment of Visual Loss, Iowa City VA Health Care System, Iowa City, IA, 52246, USA.
Department of Molecular Physiology and Biophysics, The University of Iowa, Iowa City, IA, 52242, USA.
Sci Rep. 2019 May 1;9(1):6752. doi: 10.1038/s41598-019-42159-0.
Chédiak-Higashi syndrome (CHS) is a lethal disorder caused by mutations in the LYST gene that involves progressive neurologic dysfunction. Lyst-mutant mice exhibit neurologic phenotypes that are sensitive to genetic background. On the DBA/2J-, but not on the C57BL/6J-background, Lyst-mutant mice exhibit overt tremor phenotypes associated with loss of cerebellar Purkinje cells. Here, we tested whether assays for ataxia could measure this observed strain-dependency, and if so, establish parameters for empowering phenotype- and candidate-driven approaches to identify genetic modifier(s). A composite phenotypic scoring system distinguished phenotypes in Lyst-mutants and uncovered a previously unrecognized background difference between wild-type C57BL/6J and DBA/2J mice. Accelerating rotarod performance also distinguished phenotypes in Lyst-mutants, but at more advanced ages. These results establish that genetic background, Lyst genotype, and age significantly influence the severity of CHS-associated neurologic deficits. Purkinje cell quantifications likewise distinguished phenotypes of Lyst-mutant mice, as well as background differences between wild-type C57BL/6J and DBA/2J mice. To aid identification of potential genetic modifier genes causing these effects, we searched public datasets for cerebellar-expressed genes that are differentially expressed and/or contain potentially detrimental genetic variants. From these approaches, Nos1, Prdx2, Cbln3, Gnb1, Pttg1 were confirmed to be differentially expressed and leading candidates.
Chédiak-Higashi 综合征 (CHS) 是一种致命疾病,由 LYST 基因突变引起,涉及进行性神经功能障碍。Lyst 突变小鼠表现出的神经表型对遗传背景敏感。在 DBA/2J-背景下,但不在 C57BL/6J-背景下,Lyst 突变小鼠表现出明显的震颤表型,伴有小脑浦肯野细胞缺失。在这里,我们测试了是否可以使用共济失调测定来衡量这种观察到的与菌株有关的依赖性,如果可以,是否可以建立参数,以支持表型和候选驱动的方法来鉴定遗传修饰因子。复合表型评分系统区分了 Lyst 突变体中的表型,并揭示了野生型 C57BL/6J 和 DBA/2J 小鼠之间以前未被认识到的背景差异。加速旋转棒性能也区分了 Lyst 突变体中的表型,但在更高级的年龄。这些结果表明遗传背景、Lyst 基因型和年龄显著影响 CHS 相关神经缺陷的严重程度。浦肯野细胞计数同样区分了 Lyst 突变体小鼠的表型,以及野生型 C57BL/6J 和 DBA/2J 小鼠之间的背景差异。为了帮助鉴定导致这些影响的潜在遗传修饰基因,我们在公共数据集搜索中寻找差异表达和/或包含潜在有害遗传变异的小脑表达基因。通过这些方法,Nos1、Prdx2、Cbln3、Gnb1、Pttg1 被证实为差异表达和主要候选基因。