Rowley Jesse W, Chappaz Stéphane, Corduan Aurélie, Chong Mark M W, Campbell Robert, Khoury Amanda, Manne Bhanu Kanth, Wurtzel Jeremy G T, Michael James V, Goldfinger Lawrence E, Mumaw Michele M, Nieman Marvin T, Kile Benjamin T, Provost Patrick, Weyrich Andrew S
The Molecular Medicine Program and Department of Internal Medicine, University of Utah School of Medicine, Salt Lake City, UT;
Australian Cancer Research Foundation Chemical Biology Division, The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC, Australia;
Blood. 2016 Apr 7;127(14):1743-51. doi: 10.1182/blood-2015-07-661371. Epub 2016 Jan 14.
Human platelets contain microRNAs (miRNAs) and miRNA processing machinery, but their contribution to platelet function remains incompletely understood. Here, we show that murine megakaryocyte (MK)-specific knockdown of Dicer1, the ribonuclease that cleaves miRNA precursors into mature miRNAs, reduces the level of the majority of miRNAs in platelets. This leads to altered platelet messenger RNA (mRNA) expression profiles and mild thrombocytopenia. Fibrinogen receptor subunits Itga2b (αIIb) and Itgb3 (β3) mRNAs were among the differentially expressed transcripts that are increased in platelets lacking Dicer1. Argonaute 2 (Ago2), a member of the miRNA silencing complex, co-immunoprecipitated with αIIband β3mRNAs in wild-type platelets. Furthermore, co-immunoprecipitation experiments suggested reduced αIIb/β3/Ago2 complexes in miRNA-deficient platelets. These results suggested that miRNAs regulate both integrin subunits. Subsequent 3' untranslated region luciferase reporter assays confirmed that the translation of both αIIband β3mRNAs can be regulated by miRNAs miR-326, miR-128, miR-331, and miR-500. Consistent with these molecular changes, the deletion ofDicer1resulted in increased surface expression of integrins αIIband β3, and enhanced platelet binding to fibrinogen in vivo and in vitro. Heightened platelet reactivity, shortened tail-bleeding time, and reduced survival following collagen/epinephrine-induced pulmonary embolism were also observed in Dicer1-deficient animals. CombinedPf4-cre-mediated deletion of Drosha and Dicer1 did not significantly exacerbate phenotypes observed in single Dicer1 knockout mice. In summary, these findings indicate that Dicer1-dependent generation of mature miRNAs in late-stage MKs and platelets modulates the expression of target mRNAs important for the hemostatic and thrombotic function of platelets.
人类血小板含有微小RNA(miRNA)和miRNA加工机制,但其对血小板功能的贡献仍未完全明确。在此,我们表明,在小鼠巨核细胞(MK)中特异性敲低Dicer1(一种将miRNA前体切割成成熟miRNA的核糖核酸酶)会降低血小板中大多数miRNA的水平。这导致血小板信使核糖核酸(mRNA)表达谱改变以及轻度血小板减少。纤维蛋白原受体亚基Itga2b(αIIb)和Itgb3(β3)的mRNA是在缺乏Dicer1的血小板中差异表达且增加的转录本。微小RNA沉默复合体的成员AGO2(Argonaute 2)在野生型血小板中与αIIb和β3 mRNA进行了共免疫沉淀。此外,共免疫沉淀实验表明,在缺乏miRNA的血小板中αIIb/β3/AGO2复合体减少。这些结果表明,miRNA调节这两种整合素亚基。随后的3'非翻译区荧光素酶报告基因检测证实,αIIb和β3 mRNA的翻译均可受miRNA miR-326、miR-128、miR-331和miR-500调节。与这些分子变化一致,Dicer1的缺失导致整合素αIIb和β3的表面表达增加,并增强了血小板在体内和体外与纤维蛋白原的结合。在缺乏Dicer1的动物中还观察到血小板反应性增强、尾部出血时间缩短以及胶原/肾上腺素诱导的肺栓塞后存活率降低。Pf4-cre介导的Drosha和Dicer1联合缺失并未显著加重在单Dicer1基因敲除小鼠中观察到的表型。总之,这些发现表明,晚期MK和血小板中依赖Dicer1产生的成熟miRNA调节对血小板止血和血栓形成功能重要的靶mRNA的表达。