Department of Tumor and Diagnostic Pathology, Atomic Bomb Disease Institute, Nagasaki University, Nagasaki, Japan.
High Medical School, Faculty of Medicine and Health Care, Al Farabi Kazakh National University, Almaty, Kazakhstan.
Cancer Sci. 2020 Aug;111(8):2814-2823. doi: 10.1111/cas.14501. Epub 2020 Jun 30.
Oncocytic cell tumor of the thyroid is composed of large polygonal cells with eosinophilic cytoplasm that is rich in mitochondria. These tumors frequently have the mutations in mitochondrial DNA encoding the mitochondrial electron transport system complex I. However, the mechanism for accumulation of abnormal mitochondria is unknown. A noncanonical mitophagy system has recently been identified, and mitochondria-eating protein (MIEAP) plays a key role in this system. We therefore hypothesized that accumulation of abnormal mitochondria could be attributed to defective MIEAP expression in these tumors. We first show that MIEAP was expressed in all the conventional thyroid follicular adenomas (FAs)/adenomatous goiters (AGs) but not in oncocytic FAs/AGs; its expression was defective not only in oncocytic thyroid cancers but also in the majority of conventional thyroid cancers. Expression of MIEAP was not correlated with methylation status of the 5'-UTR of the gene. Our functional analysis showed that exogenously induced MIEAP, but not PARK2, reduced the amounts of abnormal mitochondria, as indicated by decreased reactive oxygen species levels, mitochondrial DNA / nuclear DNA ratios, and cytoplasmic acidification. Therefore, together with previous studies showing that impaired mitochondrial function triggers compensatory mitochondrial biogenesis that causes an increase in the amounts of mitochondria, we conclude that, in oncocytic cell tumors of the thyroid, increased abnormal mitochondria cannot be efficiently eliminated because of a loss of MIEAP expression, ie impaired MIEAP-mediated noncanonical mitophagy.
甲状腺嗜酸细胞瘤由富含线粒体的大多边形细胞组成。这些肿瘤常存在编码线粒体电子传递系统复合物 I 的线粒体 DNA 突变。然而,异常线粒体积累的机制尚不清楚。最近已经确定了一种非典型的线粒体自噬系统,线粒体吞噬蛋白 (MIEAP) 在该系统中发挥关键作用。因此,我们假设这些肿瘤中异常线粒体的积累可能归因于 MIEAP 表达的缺陷。我们首先表明,MIEAP 在所有常规甲状腺滤泡性腺瘤 (FA)/腺瘤性甲状腺肿 (AG) 中表达,但不在嗜酸细胞性 FA/AG 中表达;其表达不仅在嗜酸细胞性甲状腺癌中,而且在大多数常规甲状腺癌中均有缺陷。MIEAP 的表达与基因 5'-UTR 的甲基化状态无关。我们的功能分析表明,外源性诱导的 MIEAP(而非 PARK2)可减少异常线粒体的数量,表现为活性氧水平、线粒体 DNA/核 DNA 比值和细胞质酸化降低。因此,结合先前的研究表明,线粒体功能受损会触发代偿性线粒体生物发生,导致线粒体数量增加,我们得出结论,在甲状腺嗜酸细胞瘤中,由于 MIEAP 表达缺失导致的异常线粒体不能被有效清除,即 MIEAP 介导的非典型线粒体自噬受损。