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一种新型 ITGA2B 双胞嘧啶移码突变(c.1986_1987insCC)导致猫患 Glanzmann 血小板无力症。

A novel ITGA2B double cytosine frameshift variant (c.1986_1987insCC) leads to Glanzmann's thrombasthenia in a cat.

机构信息

Department of Medicine and Epidemiology, School of Veterinary Medicine, University of California-Davis, Davis, California, USA.

Department of Clinical Sciences, College of Veterinary Medicine, North Carolina State University, Raleigh, North Carolina, USA.

出版信息

J Vet Intern Med. 2024 May-Jun;38(3):1408-1417. doi: 10.1111/jvim.17030. Epub 2024 Mar 1.

Abstract

BACKGROUND

Glanzmann's thrombasthenia (GT) is a congenital platelet disorder affecting approximately 1:1 000 000 people globally and characterized by impaired platelet aggregation and clot retraction. Autosomal recessive, loss-of-function, variants in ITGA2B or ITGB3 of the αIIbβ3 receptor cause the disease in humans. A cat affected by Glanzmann's and macrothrombocytopenia was presented to the UC Davis VMTH.

HYPOTHESIS/OBJECTIVES: Severe thrombopathia in this cat has an underlying genetic etiology.

ANIMALS

A single affected patient, 2 age-matched clinically healthy controls, and a geriatric population (n = 20) of normal cats.

METHODS

Physical examination and clinical pathology tests were performed on the patient. Flow cytometry and platelet aggregometry analyses for patient phenotyping were performed. Patient and validation cohort gDNA samples were extracted for Sanger sequencing of a previously identified ITGA2B (c.1986delC) variant. Reverse transcriptase PCR was performed on patient and healthy control PRP samples to verify ITGA2B variant consequence.

RESULTS

A novel c.1986_1987insCC autosomal recessive variant in ITGA2B was identified. This variant was absent in a population of 194 unrelated cats spanning 44 different breeds. Complete loss of ITGA2B transcript and protein expression was verified by RT-PCR and flow cytometry, explaining the underlying etiology of GT, and likely macrothrombocytopenia, in this cat.

CONCLUSIONS AND CLINICAL IMPORTANCE

This study emphasizes the role of precision medicine in cardiovascular disease of cats and identified yet another variant that may be of utility for screening in the feline population. This study provides a small-volume, standardized, successful protocol for adequate platelet RNA isolation and subsequent molecular assessment of gene expression in cats.

摘要

背景

Glanzmann 血小板无力症(GT)是一种影响全球约 1/1000000 人的先天性血小板疾病,其特征为血小板聚集和凝血回缩受损。人类的疾病由 αIIbβ3 受体的 ITGA2B 或 ITGB3 常染色体隐性、功能丧失的变异引起。一只患有 Glanzmann 和巨血小板减少症的猫被带到了加州大学戴维斯分校兽医医疗中心。

假说/目的:这只猫的严重血小板病有潜在的遗传病因。

动物

一只受影响的单一患者、两只年龄匹配的临床健康对照和一群正常猫的老年人群(n = 20)。

方法

对患者进行了体格检查和临床病理学检查。对患者的表型进行了流式细胞术和血小板聚集分析。提取患者和验证队列的 gDNA 样本,对先前鉴定的 ITGA2B(c.1986delC)变异进行 Sanger 测序。对患者和健康对照 PRP 样本进行 RT-PCR,以验证 ITGA2B 变异的后果。

结果

发现了一种新的 ITGA2B 中的 c.1986_1987insCC 常染色体隐性变异。该变异在跨越 44 个不同品种的 194 只无关猫的群体中不存在。通过 RT-PCR 和流式细胞术验证了完全缺失 ITGA2B 转录本和蛋白表达,这解释了 GT 的潜在病因,并且可能导致这只猫的巨血小板减少症。

结论和临床意义

本研究强调了精准医学在猫心血管疾病中的作用,并确定了另一种可能对猫群筛查有用的变异。本研究提供了一种小体积、标准化、成功的方案,可用于猫的血小板 RNA 充分分离,随后进行基因表达的分子评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4d0/11099703/2c0d41f9edc1/JVIM-38-1408-g001.jpg

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