MitoLab Team, MitoVasc Unit, CNRS UMR6015, INSERM U1083, SFR ICAT, Angers University, Angers, France.
MitoLab Team, Institut MitoVasc, CNRS UMR6015, INSERM U1083, Angers University, Angers, France; Departments of Biochemistry and Genetics, University Hospital Angers, Angers, France.
Mitochondrion. 2022 May;64:19-26. doi: 10.1016/j.mito.2022.02.005. Epub 2022 Feb 18.
Cancer/Testis Antigens (CTAs) represent a group of proteins whose expression under physiological conditions is restricted to testis but activated in many human cancers. Also, it was observed that co-expression of multiple CTAs worsens the patient prognosis. Five CTAs were reported acting in mitochondria and we recently reported 147 transcripts encoded by 67 CTAs encoding for proteins potentially targeted to mitochondria. Among them, we identified the two isoforms encoded by CT55 for whom the function is poorly understood. First, we found that patients with tumors expressing wild-type CT55 are associated with poor survival. Moreover, CT55 silencing decreases dramatically cell proliferation. Second, to investigate the role of CT55 on mitochondria, we first show that CT55 is localized to both mitochondria and endoplasmic reticulum (ER) due to the presence of an ambiguous N-terminal targeting signal. Then, we show that CT55 silencing decreases mtDNA copy number and delays mtDNA recovery after an acute depletion. Moreover, demethylation of CT55 promotor increases its expression, which in turn increases mtDNA copy number. Finally, we measured the mtDNA copy number in NCI-60 cell lines and screened for genes whose expression is strongly correlated to mtDNA amount. We identified CT55 as the second highest correlated hit. Also, we show that compared to siRNA scrambled control (siCtrl) treatment, CT55 specific siRNA (siCT55) treatment down-regulates aerobic respiration, indicating that CT55 sustains mitochondrial respiration. Altogether, these data show for first time that CT55 acts on mtDNA copy number, modulates mitochondrial activity to sustain cancer cell proliferation.
癌症/睾丸抗原 (CTAs) 代表一组蛋白质,其在生理条件下的表达仅限于睾丸,但在许多人类癌症中被激活。此外,还观察到多种 CTA 的共表达会使患者的预后恶化。有 5 种 CTA 被报道在线粒体中发挥作用,我们最近报道了 67 种 CTA 编码的 147 种转录本,这些转录本编码的蛋白质可能靶向线粒体。在这些转录本中,我们鉴定了由 CT55 编码的两个同工型,其功能知之甚少。首先,我们发现表达野生型 CT55 的肿瘤患者的生存预后较差。此外,CT55 沉默显著降低了细胞增殖。其次,为了研究 CT55 在线粒体中的作用,我们首先表明 CT55 由于存在模棱两可的 N 端靶向信号,定位于线粒体和内质网 (ER)。然后,我们表明 CT55 沉默会降低 mtDNA 拷贝数,并延迟急性耗竭后 mtDNA 的恢复。此外,CT55 启动子的去甲基化会增加其表达,从而增加 mtDNA 拷贝数。最后,我们测量了 NCI-60 细胞系中的 mtDNA 拷贝数,并筛选出与 mtDNA 含量强烈相关的基因。我们确定 CT55 为第二高相关基因。此外,与 siRNA 随机对照 (siCtrl) 处理相比,CT55 特异性 siRNA (siCT55) 处理会下调需氧呼吸,表明 CT55 维持线粒体呼吸。总之,这些数据首次表明 CT55 作用于 mtDNA 拷贝数,调节线粒体活性以维持癌细胞增殖。