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钙蛋白酶切割决定糖尿病患者血小板 microRNA 水平和功能。

Dicer cleavage by calpain determines platelet microRNA levels and function in diabetes.

机构信息

From the Institute for Vascular Signaling, Centre for Molecular Medicine, and DZHK (German Centre for Cardiovascular Research) partner site Rhine-Main, Frankfurt, Germany (A.E., L.S., J.H., H.L., V.R., I.F.); Functional Proteomics, SFB 815 Core Unit, Goethe-University, Frankfurt, Germany (I.W.); Walter-Brendel-Centre of Experimental Medicine and DZHK partner site Munich Heart Alliance, Ludwig-Maximilians-Universität, Munich, Germany (J.P.); Endokrinologikum Frankfurt, Frankfurt, Germany (A.M.); and Centre Hospitalier Universitaire de Québec Research Center, and Faculty of Medicine, Université Laval, Quebec, Canada (P.P.).

出版信息

Circ Res. 2015 Jul 3;117(2):157-65. doi: 10.1161/CIRCRESAHA.117.305784. Epub 2015 May 5.

Abstract

RATIONALE

MicroRNAs (miRNAs) are short noncoding RNA species generated by the processing of longer precursors by the ribonucleases Drosha and Dicer. Platelets contain large amounts of miRNA that are altered by disease, in particular diabetes mellitus.

OBJECTIVE

This study determined why platelet miRNA levels are attenuated in diabetic individuals and how decreased levels of the platelet-enriched miRNA, miR-223, affect platelet function.

METHODS AND RESULTS

Dicer levels were altered in platelets from diabetic mice and patients, a change that could be attributed to the cleavage of the enzyme by calpain, resulting in loss of function. Diabetes mellitus in human subjects as well as in mice resulted in decreased levels of platelet miR-142, miR-143, miR-155, and miR-223. Focusing on only 1 of these miRNAs, miR-223 deletion in mice resulted in modestly enhanced platelet aggregation, the formation of large thrombi and delayed clot retraction compared with wild-type littermates. A similar dysregulation was detected in platelets from diabetic patients. Proteomic analysis of platelets from miR-223 knockout mice revealed increased levels of several proteins, including kindlin-3 and coagulation factor XIII-A. Whereas, kindlin-3 was indirectly regulated by miR-223, factor XIII was a direct target and both proteins were also altered in diabetic platelets. Treating diabetic mice with a calpain inhibitor prevented loss of platelet dicer as well as the diabetes mellitus-induced decrease in platelet miRNA levels and the upregulation of miR-223 target proteins.

CONCLUSIONS

Thus, calpain inhibition may be one means of normalizing platelet miRNA processing as well as platelet function in diabetes mellitus.

摘要

背景

MicroRNAs(miRNAs)是由核糖核酸酶 Drosha 和 Dicer 对较长前体进行加工产生的短非编码 RNA 种类。血小板含有大量受疾病影响而改变的 miRNA,尤其是糖尿病。

目的

本研究旨在确定为什么糖尿病个体的血小板 miRNA 水平降低,以及血小板丰富的 miRNA(miR-223)水平降低如何影响血小板功能。

方法和结果

糖尿病小鼠和患者的血小板中 Dicer 水平发生改变,这种改变可归因于钙蛋白酶对酶的切割,导致其功能丧失。人类和小鼠的糖尿病导致血小板 miR-142、miR-143、miR-155 和 miR-223 水平降低。仅关注其中的 1 种 miRNA,即 miR-223 缺失的小鼠与野生型同窝仔鼠相比,血小板聚集适度增强,形成大血栓,血栓回缩延迟。在糖尿病患者的血小板中也检测到类似的失调。miR-223 敲除小鼠的血小板蛋白质组分析显示,包括连接蛋白 3 和凝血因子 XIII-A 在内的几种蛋白质的水平升高。虽然连接蛋白 3 是间接受 miR-223 调节的,但因子 XIII 是直接靶点,并且这两种蛋白质在糖尿病血小板中也发生改变。用钙蛋白酶抑制剂治疗糖尿病小鼠可防止血小板 Dicer 丢失,以及糖尿病诱导的血小板 miRNA 水平降低和 miR-223 靶蛋白的上调。

结论

因此,钙蛋白酶抑制可能是一种使糖尿病中血小板 miRNA 加工和血小板功能正常化的方法。

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