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自发性颤抖大鼠突变体——一种X连锁震颤/共济失调的新模型。

Spontaneous shaker rat mutant - a new model for X-linked tremor/ataxia.

作者信息

Figueroa Karla P, Paul Sharan, Calì Tito, Lopreiato Raffaele, Karan Sukanya, Frizzarin Martina, Ames Darren, Zanni Ginevra, Brini Marisa, Dansithong Warunee, Milash Brett, Scoles Daniel R, Carafoli Ernesto, Pulst Stefan M

机构信息

Department of Neurology, University of Utah, Salt Lake City, UT 84112, USA.

Department of Biomedical Sciences, University of Padova, Padova, Italy.

出版信息

Dis Model Mech. 2016 May 1;9(5):553-62. doi: 10.1242/dmm.022848. Epub 2016 Mar 24.

Abstract

The shaker rat is an X-linked recessive spontaneous model of progressive Purkinje cell (PC) degeneration exhibiting a shaking ataxia and wide stance. Generation of Wistar Furth (WF)/Brown Norwegian (BN) F1 hybrids and genetic mapping of F2 sib-sib offspring using polymorphic markers narrowed the candidate gene region to 26 Mbp denoted by the last recombinant genetic marker DXRat21 at 133 Mbp to qter (the end of the long arm). In the WF background, the shaker mutation has complete penetrance, results in a stereotypic phenotype and there is a narrow window for age of disease onset; by contrast, the F2 hybrid phenotype was more varied, with a later age of onset and likely non-penetrance of the mutation. By deep RNA-sequencing, five variants were found in the candidate region; four were novel without known annotation. One of the variants caused an arginine (R) to cysteine (C) change at codon 35 of the ATPase, Ca(2+) transporting, plasma membrane 3 (Atp2b3) gene encoding PMCA3 that has high expression in the cerebellum. The variant was well supported by hundreds of overlapping reads, and was found in 100% of all affected replicas and 0% of the wild-type (WT) replicas. The mutation segregated with disease in all affected animals and the amino acid change was found in an evolutionarily conserved region of PMCA3. Despite strong genetic evidence for pathogenicity, in vitro analyses of PMCA3(R35C) function did not show any differences to WT PMCA3. Because Atp2b3 mutation leads to congenital ataxia in humans, the identified Atp2b3 missense change in the shaker rat presents a good candidate for the shaker rat phenotype based on genetic criteria, but cannot yet be considered a definite pathogenic variant owing to lack of functional changes.

摘要

摇晃大鼠是一种X连锁隐性进行性浦肯野细胞(PC)变性的自发模型,表现为摇晃性共济失调和宽基步态。通过培育Wistar Furth(WF)/棕色挪威(BN)F1杂种,并使用多态性标记对F2同胞后代进行基因定位,将候选基因区域缩小到26兆碱基对,该区域由位于133兆碱基对至qter(长臂末端)的最后一个重组遗传标记DXRat21表示。在WF背景下,摇晃突变具有完全外显率,导致典型的表型,且疾病发病年龄窗口较窄;相比之下,F2杂种的表型更为多样,发病年龄较晚,且突变可能无外显率。通过深度RNA测序,在候选区域发现了五个变体;其中四个是新的,没有已知注释。其中一个变体导致编码质膜钙泵3(PMCA3)的ATP酶、钙转运、质膜3(Atp2b3)基因第35密码子处的精氨酸(R)变为半胱氨酸(C),该基因在小脑中高表达。该变体得到数百个重叠读数的有力支持,在所有受影响的复制品中占100%,在野生型(WT)复制品中占0%。该突变在所有受影响的动物中与疾病分离,并且在PMCA3的进化保守区域中发现了氨基酸变化。尽管有强有力的遗传证据表明其具有致病性,但对PMCA3(R35C)功能的体外分析并未显示出与野生型PMCA3有任何差异。由于Atp2b3突变会导致人类先天性共济失调,基于遗传标准,在摇晃大鼠中鉴定出的Atp2b3错义变化是摇晃大鼠表型的一个很好的候选基因,但由于缺乏功能变化,目前还不能被认为是一个确定的致病变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e42/4892658/a519ea05767a/dmm-9-022848-g1.jpg

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