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在意外自然死亡中鉴定出的TRPM4变体的功能特性

Functional characterization of TRPM4 variants identified in sudden unexpected natural death.

作者信息

Subbotina Ekaterina, Williams Nori, Sampson Barbara A, Tang Yingying, Coetzee William A

机构信息

Department of Pediatrics, Physiology & Neuroscience and Biochemistry and Molecular Pharmacology, NYU School of Medicine, New York, NY 10016, USA.

Molecular Genetics Laboratory, Office of Chief Medical Examiner, New York, NY, USA.

出版信息

Forensic Sci Int. 2018 Dec;293:37-46. doi: 10.1016/j.forsciint.2018.10.006. Epub 2018 Oct 24.

Abstract

BACKGROUND

The TRPM4 gene encodes the subunit of the Ca-activated nonselective cation channel, which is enriched in the specialized cardiac conduction system and Purkinje fibers. To date, several putative disease-causing variants in TRPM4 have been reported to be associated with cardiac arrhythmia and progressive conduction disease. Here, we report the functional effects of previously uncharacterized variants of uncertain significance (VUS) that we have found while performing a "genetic autopsy" in individuals who have suffered sudden unexpected death (SUD) in the New York City area.

METHODS AND RESULTS

We have identified thirteen uncommon missense VUS in TRPM4 by testing 95 targeted genes implicated in channelopathy and cardiomyopathy in 330 cases of SUD. In several cases there were co-existing VUS in one or more other genes that were tested. We selected four TRPM4 VUS (C20S, A380V, L595V and I1082S) for functional characterization, since these cases lacked detectable variants in other genes of our testing panel. Two of the cases were infants, one was a child and one an adult. RNA-seq data analysis showed that the longer TRPM4b splice variant is predominantly expressed in adult and fetal human heart. We therefore used site-directed mutagenesis to introduce these variants in a TRPM4b cDNA. HEK293 cells were transfected with the cDNAs and patch clamping was performed to assess the functional consequences of the TRPM4 mutants. The TRPM4 current was recorded in excised patches and was significantly reduced by each of the mutants. The total protein level of TRPM4-C20S was markedly decreased, whereas the A380V and L595V mutants exhibited decreased surface expression. The TRPM4-A380V current rapidly desensitized following patch excision.

CONCLUSIONS

Each of the VUS tested caused a defect in TRPM4 channel function via distinctly different mechanisms, hence, it lays the foundation for further co-segregation family studies and animal studies of the TRPM4 variants.

摘要

背景

TRPM4基因编码钙激活的非选择性阳离子通道亚基,该通道在心脏特殊传导系统和浦肯野纤维中富集。迄今为止,已有报道称TRPM4中几种可能的致病变体与心律失常和进行性传导疾病有关。在此,我们报告了在对纽约市地区意外猝死(SUD)个体进行“基因尸检”时发现的意义未明的先前未表征变体(VUS)的功能影响。

方法与结果

通过检测330例SUD病例中95个与通道病和心肌病相关的靶向基因,我们在TRPM4中鉴定出13个罕见的错义VUS。在一些病例中,一个或多个其他检测基因中存在共存的VUS。我们选择了四个TRPM4 VUS(C20S、A380V、L595V和I1082S)进行功能表征,因为这些病例在我们检测的其他基因中未检测到变体。其中两例为婴儿,一例为儿童,一例为成人。RNA测序数据分析表明,较长的TRPM4b剪接变体在成人和胎儿心脏中主要表达。因此,我们使用定点诱变将这些变体引入TRPM4b cDNA中。用这些cDNA转染HEK293细胞,并进行膜片钳记录以评估TRPM4突变体的功能后果。在切除的膜片中记录到TRPM4电流,每个突变体均使其显著降低。TRPM4-C20S的总蛋白水平显著降低,而A380V和L595V突变体的表面表达降低。膜片切除后,TRPM4-A380V电流迅速脱敏。

结论

所检测的每个VUS均通过明显不同的机制导致TRPM4通道功能缺陷,因此,这为进一步对TRPM4变体进行共分离家族研究和动物研究奠定了基础。

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