Dysregulation of Parkin-mediated mitophagy in thyroid Hürthle cell tumors

粒体自噬 自噬 帕金 线粒体 细胞生物学 品脱1 生物 癌症研究 化学 医学 病理 生物化学 细胞凋亡 疾病 帕金森病
作者
Junguee Lee,Sujin Ham,Min Hee Lee,Soung Jung Kim,Ji Hoon Park,Seong Eun Lee,Joon Young Chang,Kyong Hye Joung,Tae Yong Kim,Jin‐Man Kim,Hae Joung Sul,Gi Ryang Kweon,Young Suk Jo,Koon Soon Kim,Young Kee Shong,Giuseppe Gasparre,Jong Kyeong Chung,Anna Maria Porcelli,Minho Shong
出处
期刊:Carcinogenesis [Oxford University Press]
卷期号:36 (11): 1407-1418 被引量:29
标识
DOI:10.1093/carcin/bgv122
摘要

Abnormal accumulation of defective mitochondria is the hallmark of oncocytes, which are frequently observed in thyroid Hürthle cell lesions. Autophagy is an essential cellular catabolic mechanism for the degradation of dysfunctional organelles and has been implicated in several human diseases. It is yet unknown how autophagic turnover of defective mitochondria in Hürthle cell tumors is regulated. We characterized the expression patterns of molecular markers including Beclin1, LC3, PINK1 and Parkin, which are required for autophagy or mitophagy, in human oncocytic lesions of the thyroid. To undertake mechanistic studies, we investigated autophagy and mitophagy using XTC.UC1 cells, the only in vitro model of Hürthle cell tumors. Beclin1 and LC3 were highly expressed in oncocytes of Hürthle cell tumors. XTC.UC1 showed autophagic responses to starvation and rapamycin treatment, whereas they displayed ineffective activation of mitophagy, which is triggered by the coordinated action of PINK1 and Parkin in response to CCCP. This resulted in a decreased turnover of abnormal mitochondria. The mechanisms underlying defective mitophagy and mitochondrial turnover were investigated by genetic analysis of the PARK2 gene in XTC.UC1 and Hürthle cell tumor tissues. XTC.UC1 and several tumors harbored the V380L mutation, resulting in dysfunctional autoubiquitination and decreased E3 ligase activity. Consistently, oncocytes in Hürthle cell tumors displayed comparable expression of PINK1 but decreased Parkin expression in comparison to normal thyrocytes. The introduction of wild-type Parkin sensitized XTC.UC1 to death induced by CCCP. This study provides a possible etiological basis for oncocytic formation in heterogeneous Hürthle cell tumors through insufficient mitophagy leading to ineffective turnover of aberrant mitochondria caused by dysfunctional Parkin-mediated pathways of mitochondria quality control.
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