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ARK5增强了与人类多发性骨髓瘤细胞中线粒体从融合到裂变的形态动力学相关的细胞存活能力。

ARK5 enhances cell survival associated with mitochondrial morphological dynamics from fusion to fission in human multiple myeloma cells.

作者信息

Karnan Sivasundaram, Hanamura Ichiro, Ota Akinobu, Vu Lam Quang, Uchino Kaori, Horio Tomohiro, Murakami Satsuki, Mizuno Shohei, Rahman Md Lutfur, Wahiduzzaman Md, Hasan Muhammad Nazmul, Biswas Mrityunjoy, Hyodo Toshinori, Ito Hideaki, Suzuki Atsushi, Konishi Hiroyuki, Tsuzuki Shinobu, Hosokawa Yoshitaka, Takami Akiyoshi

机构信息

Department of Biochemistry, Aichi Medical University, Nagakute, Aichi, Japan.

Division of Hematology, Department of Internal Medicine, Aichi Medical University, Nagakute, Aichi, Japan.

出版信息

Cell Death Discov. 2024 Jan 29;10(1):56. doi: 10.1038/s41420-024-01814-w.

Abstract

5' adenosine monophosphate-activated protein kinase-related kinase 5 (ARK5) is involved in mitochondrial ATP production and associated with poor prognosis of multiple myeloma (MM). However, the molecular mechanisms of ARK5 in MM remain largely unknown. This study examined the pathogenic role of ARK5 in mitochondria by using genetically modified isogenic cell clones with or without ARK5 in human myeloma cell lines, KMS-11 and Sachi, which overexpress ARK5. The biallelic knockout of ARK5 (ARK5-KO) inhibited cell proliferation, colony formation, and migration with increased apoptosis. Mitochondrial fusion was enhanced in ARK5-KO cells, unlike in ARK5 wild-type (ARK5-WT) cells, which exhibited increased mitochondrial fission. Furthermore, ARK5-KO cells demonstrated a lower phosphorylated dynamin-related protein 1 at serine 616, higher protein expression of mitofusin-1 (MFN1) and MFN2, optic atrophy 1 with a lower level of ATP, and higher levels of lactate and reactive oxygen species than ARK5-WT cells. Our findings suggest that ARK5-enhanced myeloma cells can survive associated mitochondrial fission and activity. This study first revealed the relationship between ARK5 and mitochondrial morphological dynamics. Thus, our outcomes show novel aspects of mitochondrial biology of ARK5, which can afford a more advanced treatment approach for unfavorable MM expressing ARK5.

摘要

5'-腺苷单磷酸激活的蛋白激酶相关激酶5(ARK5)参与线粒体ATP的产生,并与多发性骨髓瘤(MM)的不良预后相关。然而,ARK5在MM中的分子机制仍 largely未知。本研究通过在人骨髓瘤细胞系KMS-11和Sachi中使用有或没有ARK5的基因修饰同基因细胞克隆,研究了ARK5在线粒体中的致病作用,这两种细胞系过表达ARK5。ARK5的双等位基因敲除(ARK5-KO)抑制细胞增殖、集落形成和迁移,并增加细胞凋亡。与表现出线粒体分裂增加的ARK5野生型(ARK5-WT)细胞不同,ARK5-KO细胞中的线粒体融合增强。此外,与ARK5-WT细胞相比,ARK5-KO细胞在丝氨酸616处的磷酸化动力相关蛋白1水平较低,线粒体融合蛋白-1(MFN1)和MFN2的蛋白表达较高,视神经萎缩蛋白1水平较低且ATP水平较低,乳酸和活性氧水平较高。我们的研究结果表明,ARK5增强的骨髓瘤细胞可以通过相关的线粒体分裂和活性存活。本研究首次揭示了ARK5与线粒体形态动力学之间的关系。因此,我们的结果显示了ARK5线粒体生物学的新方面,这可以为表达ARK5的不良MM提供更先进的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aaa/10822851/b3538e7e50b6/41420_2024_1814_Fig1_HTML.jpg

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