Biochemical Institute, Christian-Albrechts-University of Kiel, Kiel, Germany.
Biochemical Institute, Christian-Albrechts-University of Kiel, Kiel, Germany.
J Biol Chem. 2021 Jan-Jun;296:100152. doi: 10.1074/jbc.RA120.015867. Epub 2020 Dec 10.
Phospholipase D3 (PLD3) and phospholipase D4 (PLD4), the most recently described lysosomal nucleases, are associated with Alzheimer's disease, spinocerebellar ataxia, and systemic lupus erythematosus. They exhibit 5' exonuclease activity on single-stranded DNA, hydrolyzing it at the acidic pH associated with the lysosome. However, their full cellular function is inadequately understood. To examine these enzymes, we developed a robust and automatable cell-based assay based on fluorophore- and fluorescence-quencher-coupled oligonucleotides for the quantitative determination of acidic 5' exonuclease activity. We validated the assay under knockout and PLD-overexpression conditions and then applied it to characterize PLD3 and PLD4 biochemically. Our experiments revealed PLD3 as the principal acid 5' exonuclease in HeLa cells, where it showed a markedly higher specific activity compared with PLD4. We further used our newly developed assay to determine the substrate specificity and inhibitory profile of PLD3 and found that proteolytic processing of PLD3 is dispensable for its hydrolytic activity. We followed the expression, proteolytic processing, and intracellular distribution of genetic PLD3 variants previously associated with Alzheimer's disease and investigated each variant's effect on the 5' nuclease activity of PLD3, finding that some variants lead to reduced activity, but others not. The development of a PLD3/4-specific biochemical assay will be instrumental in understanding better both nucleases and their incompletely understood roles in vitro and in vivo.
磷脂酶 D3(PLD3)和磷脂酶 D4(PLD4)是最近描述的溶酶体核酸酶,与阿尔茨海默病、脊髓小脑共济失调和系统性红斑狼疮有关。它们在酸性 pH 值下对单链 DNA 表现出 5'外切核酸酶活性,在溶酶体中水解单链 DNA。然而,它们的完整细胞功能尚未得到充分理解。为了研究这些酶,我们开发了一种基于荧光团和荧光猝灭剂偶联寡核苷酸的稳健且自动化的基于细胞的测定法,用于定量测定酸性 5'外切核酸酶活性。我们在敲除和 PLD 过表达条件下验证了该测定法,然后将其应用于 PLD3 和 PLD4 的生化特性分析。我们的实验表明 PLD3 是 HeLa 细胞中的主要酸性 5'外切核酸酶,其比 PLD4 具有更高的比活性。我们进一步使用新开发的测定法确定了 PLD3 的底物特异性和抑制谱,并发现 PLD3 的蛋白水解加工对于其水解活性是可有可无的。我们跟踪了先前与阿尔茨海默病相关的遗传 PLD3 变体的表达、蛋白水解加工和细胞内分布,并研究了每个变体对 PLD3 的 5'核酸酶活性的影响,发现一些变体导致活性降低,但其他变体则没有。PLD3/4 特异性生化测定法的开发将有助于更好地理解核酸酶及其在体外和体内的不完全理解的作用。