School of Life Sciences, BK 21 Plus KNU Creative BioResearch Group, College of Natural Sciences, Kyungpook National University, Daehakro 80, Bukgu, Daegu 41566, Republic of Korea.
Department of Agricultural Biology, National Academy of Agricultural Science, RDA, Wanju, Republic of Korea.
Biochem J. 2019 Apr 26;476(8):1267-1284. doi: 10.1042/BCJ20180933.
Communications between various organelle-organelles play an essential role in cell survival. The cross-talk between mitochondria and vacuoles comes up with the vital roles of the intercompartmental process. In this study, we found a couple of cell death features, membrane damage, and apoptosis using antimicrobial peptide from American Cockroach. Periplanetasin-4 (LRHKVYGYCVLGP-NH) is a 13-mer peptide derived from and exhibits phosphatidylserine exposure and caspase activation without DNA fragmentation. Apoptotic features without DNA damage provide evidence that this peptide did not interact with DNA directly and exhibited dysfunction of mitochondria and vacuoles. Superoxide radicals were generated from mitochondria and converted to hydrogen peroxide. Despite the enhancement of catalase and total glutathione contents, oxidative damage disrupted intracellular contents. Periplanetasin-4 induced cell death associated with the production of superoxide radicals, calcium uptake in mitochondria and disorder of vacuoles, such as increased permeability and alkalization. While calcium movement from vacuoles to the mitochondria occurred, the cross-talk with these organelles proceeded and the inherent functionality was impaired. To sum up, periplanetasin-4 stimulates superoxide signal along with undermining the mitochondrial functions and interfering in communication with vacuoles.
细胞器之间的通讯在细胞存活中起着至关重要的作用。线粒体和液泡之间的串扰带来了细胞区室间过程的重要作用。在这项研究中,我们使用来自美洲蟑螂的抗菌肽发现了几种细胞死亡特征,包括膜损伤和细胞凋亡。Periplanetasin-4(LRHKVYGYCVLGP-NH)是一种 13 肽,来源于 ,并表现出暴露的磷脂酰丝氨酸和 caspase 激活,而没有 DNA 片段化。没有 DNA 损伤的凋亡特征提供了证据表明该肽没有直接与 DNA 相互作用,并且表现出线粒体和液泡的功能障碍。超氧自由基从线粒体产生,并转化为过氧化氢。尽管过氧化氢酶和总谷胱甘肽含量增加,但氧化损伤破坏了细胞内内容物。Periplanetasin-4 诱导的细胞死亡与超氧自由基的产生、线粒体中钙的摄取以及液泡的紊乱(如通透性增加和碱化)有关。当钙从液泡转移到线粒体时,这些细胞器之间的串扰发生,内在功能受到损害。总之,periplanetasin-4 刺激超氧信号,同时破坏线粒体功能,并干扰与液泡的通讯。