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miR-570 interacts with mitochondrial ATPase subunit g (ATP5L) encoding mRNA in stored platelets

机译:miR-570与储存的血小板中编码mRNA的线粒体ATPase亚基g(ATP5L)相互作用

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摘要

Loss of platelet quality during ex vivo storage is a major concern in the transfusion medicine field and it has been known that platelet mitochondrial dysfunction is associated with storage time. In the last decade, small noncoding RNAs also known as microRNAs (miRNAs) have been reported to regulate key cellular processes through their target sequence interactions with selected mRNAs. In this study, we focused on understanding the mechanisms of platelet mitochondrial dysfunction during storage through miRNA regulation of mRNAs. RNA was isolated from day 0, day 5, and day 9 of stored human leukocyte-depleted platelets and subjected to differential miRNA and mRNA profiling. The miRNA profiling identified several miRNAs at low levels including a set of 12 different miR-548 family members (miR-548a-3p, miR-548aa, miR-548x, miR-548ac, miR-548c-3p, miR-603, miR-548aj, miR-548ae, miR-548z, miR-548u, miR-548al, and miR-570-3p). The mRNA profiling identified, among many, the mitochondrial ATP synthase subunit g (ATP5L) mRNA at high levels during storage. Target Scan algorithm for potential targets of miR-570-3p also identified ATP5L as one of its targets. We further identified two target sites for miR-570-3p in the 3′ untranslated region (3′UTR) of ATP5L mRNA. While ATP5L is a subunit of F0ATPase complex, its function is not established yet. Overexpression of miR-570-3p in platelets resulted in reduced levels of ATP5L mRNA and concomitant ATP loss. These experimental results provide first-time insights into the miRNA–mRNA interactions underlying mitochondrial dysfunction in ex vivo stored platelets and warrants further investigation.
机译:离体储存期间血小板质量的损失是输血医学领域中的主要问题,并且已知血小板线粒体功能障碍与储存时间有关。在过去的十年中,已经报道了小的非编码RNA(也称为microRNA(miRNA))通过其与选定的mRNA的靶序列相互作用来调节关键的细胞过程。在这项研究中,我们专注于通过mRNA的miRNA调节来了解血小板在储存过程中线粒体功能障碍的机制。从储存的人白细胞减少的血小板的第0、5、9天分离RNA,并进行差异miRNA和mRNA谱分析。 miRNA分析鉴定了几种低水平的miRNA,包括一组12个不同的miR-548家族成员(miR-548a-3p,miR-548aa,miR-548x,miR-548ac,miR-548c-3p,miR-603,miR -548aj,miR-548ae,miR-548z,miR-548u,miR-548al和miR-570-3p)。在存储过程中,mRNA谱鉴定出许多线粒体ATP合酶亚基g(ATP5L)mRNA。针对miR-570-3p潜在目标的目标扫描算法还确定了ATP5L是其目标之一。我们进一步在ATP5L mRNA的3'非翻译区(3'UTR)中确定了miR-570-3p的两个靶位。尽管ATP5L是F0ATPase复合物的亚基,但其功能尚未建立。血小板中miR-570-3p的过表达导致ATP5L mRNA水平降低和随之而来的ATP损失。这些实验结果为离体储存的血小板中线粒体功能障碍潜在的miRNA-mRNA相互作用提供了首次见识,并值得进一步研究。

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