A new agent in the matrix: PINK1's expanded role in mitochondrial surveillance and regulation.

IF 14.3
Ian Collinson, Robin A Corey, Adam G Grieve
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Abstract

The identification of pathogenic autosomal recessive mutations in the gene encoding the PINK1 kinase provided early evidence linking mitochondrial dysfunction to neurodegeneration - in this case Parkinson's Disease. PINK1 has since become synonymous with mitophagy, with the prevailing model proposing two alternative fates. The first being partial import - inner-membrane penetration of its transmembrane domain (TMD) followed by PARL-mediated cleavage and degradation. This happens in healthy mitochondria with a high membrane potential (ΔΨ) across the inner-membrane - required for passage of proteins into or across the inner-membrane. The second being surface stabilisation, Parkin activation and initiation of mitophagy upon membrane depolarisation. But what if PINK1 acts in active mitochondria as well? Our recent work identifies a third fate - matrix entry. The findings expand the biology of PINK1 beyond mitochondrial surveillance for quality control alone. They suggest an additional mitophagy-independent regulatory role within the matrix, which turns out to be governed by the unusual properties of its TMD for the conferral of a decisive conformational switch.

基质中的新试剂:PINK1在线粒体监视和调节中的扩展作用。
在编码PINK1激酶的基因中发现致病常染色体隐性突变,提供了线粒体功能障碍与神经退行性疾病(在本例中为帕金森病)相关的早期证据。自那以后,PINK1就成为了线粒体自噬的代名词,流行的模型提出了两种不同的命运。首先是部分导入-跨膜结构域(TMD)的膜内渗透-然后是parl介导的裂解和降解。这发生在健康的线粒体中,具有高膜电位(ΔΨ)穿过细胞膜,这是蛋白质进入或穿过细胞膜所必需的。二是膜去极化后的表面稳定、帕金活化和自噬起始。但是如果PINK1也在活跃的线粒体中起作用呢?我们最近的工作发现了第三种命运——矩阵进入!这一发现扩展了PINK1的生物学特性,使其不再局限于线粒体质量监控。他们认为在基质中有一个额外的与有丝分裂无关的调节作用,这被证明是由其TMD的不寻常特性所控制的,从而赋予了一个决定性的构象开关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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