Mitochondrial Translocase TOMM22 Is Overexpressed in Pancreatic Cancer and Promotes Aggressive Growth by Modulating Mitochondrial Protein Import and Function.

IF 4.1 2区 医学 Q2 CELL BIOLOGY Molecular Cancer Research Pub Date : 2024-02-01 DOI:10.1158/1541-7786.MCR-23-0138
Mary Oluwadamilola Haastrup, Kunwar Somesh Vikramdeo, Shashi Anand, Mohammad Aslam Khan, James Elliot Carter, Seema Singh, Ajay Pratap Singh, Santanu Dasgupta
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Abstract

Pancreatic cancer has the worst prognosis among all cancers, underscoring the need for improved management strategies. Dysregulated mitochondrial function is a common feature in several malignancies, including pancreatic cancer. Although mitochondria have their own genome, most mitochondrial proteins are nuclear-encoded and imported by a multi-subunit translocase of the outer mitochondrial membrane (TOMM). TOMM22 is the central receptor of the TOMM complex and plays a role in complex assembly. Pathobiologic roles of TOMM subunits remain largely unexplored. Here we report that TOMM22 protein/mRNA is overexpressed in pancreatic cancer and inversely correlated with disease outcomes. TOMM22 silencing decreased, while its forced overexpression promoted the growth and malignant potential of the pancreatic cancer cells. Increased import of several mitochondrial proteins, including those associated with mitochondrial respiration, was observed upon TOMM22 overexpression which was associated with increased RCI activity, NAD+/NADH ratio, oxygen consumption rate, membrane potential, and ATP production. Inhibition of RCI activity decreased ATP levels and suppressed pancreatic cancer cell growth and malignant behavior confirming that increased TOMM22 expression mediated the phenotypic changes via its modulation of mitochondrial protein import and functions. Altogether, these results suggest that TOMM22 overexpression plays a significant role in pancreatic cancer pathobiology by altering mitochondrial protein import and functions.

Implications: TOMM22 bears potential for early diagnostic/prognostic biomarker development and therapeutic targeting for better management of patients with pancreatic cancer.

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线粒体转位酶TOMM22在胰腺癌中过表达,并通过调节线粒体蛋白的输入和功能促进侵袭性生长。
在所有癌症中,癌症的预后最差,这突出表明需要改进管理策略。线粒体功能失调是包括癌症在内的多种恶性肿瘤的常见特征。尽管线粒体有自己的基因组,但大多数线粒体蛋白质是由线粒体外膜的多亚基易位酶(TOMM)核编码和输入的。TOMM22是TOMM复合物的中心受体,在复合物组装中发挥作用。TOMM亚基的病理生物学作用在很大程度上仍未被探索。在这里,我们报道了TOMM22蛋白/mRNA在胰腺癌症中过表达,并与疾病结果呈负相关。TOMM22沉默减少,而其强制过表达促进了胰腺癌症细胞的生长和恶性潜能。TOMM22过表达后,观察到几种线粒体蛋白(包括与线粒体呼吸相关的蛋白)的进口增加,这与RCI活性、NAD+/NADH比率、耗氧率、膜电位和ATP产生增加有关。RCI活性的抑制降低了ATP水平并抑制了胰腺癌症细胞的生长和恶性行为,证实了TOMM22表达的增加通过其对线粒体蛋白输入和功能的调节介导了表型变化。总之,这些结果表明,TOMM22过表达通过改变线粒体蛋白的输入和功能,在胰腺癌症病理生物学中发挥着重要作用。意义:TOMM22具有早期诊断/预后生物标志物开发和治疗靶向的潜力,可更好地管理癌症患者。
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来源期刊
Molecular Cancer Research
Molecular Cancer Research 医学-细胞生物学
CiteScore
9.90
自引率
0.00%
发文量
280
审稿时长
4-8 weeks
期刊介绍: Molecular Cancer Research publishes articles describing novel basic cancer research discoveries of broad interest to the field. Studies must be of demonstrated significance, and the journal prioritizes analyses performed at the molecular and cellular level that reveal novel mechanistic insight into pathways and processes linked to cancer risk, development, and/or progression. Areas of emphasis include all cancer-associated pathways (including cell-cycle regulation; cell death; chromatin regulation; DNA damage and repair; gene and RNA regulation; genomics; oncogenes and tumor suppressors; signal transduction; and tumor microenvironment), in addition to studies describing new molecular mechanisms and interactions that support cancer phenotypes. For full consideration, primary research submissions must provide significant novel insight into existing pathway functions or address new hypotheses associated with cancer-relevant biologic questions.
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