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蜈蚣抗菌肽Scolopendin可减弱线粒体功能并引发(细胞)凋亡。

Scolopendin, an antimicrobial peptide from centipede, attenuates mitochondrial functions and triggers apoptosis in .

作者信息

Lee Heejeong, Hwang Jae-Sam, Lee Dong Gun

机构信息

School of Life Sciences, BK 21 Plus KNU Creative BioResearch Group, College of Natural Sciences, Kyungpook National University, 80 Daehakro, Bukgu, Daegu 41566, Republic of Korea.

Department of Agricultural Biology, National Academy of Agricultural Science, RDA, Wanju, Republic of Korea.

出版信息

Biochem J. 2017 Feb 20;474(5):635-645. doi: 10.1042/BCJ20161039.

DOI:10.1042/BCJ20161039
PMID:28008133
Abstract

Centipedes, a type of arthropod, reportedly produce antimicrobial peptides as part of an innate immune response. Scolopendin (SPSEKAGLQPVGRIGRMLKK) is a novel antimicrobial peptide derived from Many antifungal agents have more than one type of cell death mechanism. Although scolopendin is involved in membrane perturbation, the corresponding intracellular changes require further investigation. Therefore, we assessed the cell morphology and calcium ion concentration of the cytosol and mitochondria of scolopendin-treated cells. The treated cells were shrunken, and calcium ion homeostasis was disrupted in both the cytosol and mitochondria. These conditions attenuated mitochondrial homeostasis, disrupting mitochondrial membrane potential and cytochrome levels. Fungal cells treated with scolopendin exhibited various apoptotic phenotypes such as reactive oxygen species accumulation, phosphatidylserine exposure, chromatin condensation, and nuclear fragmentation. Scolopendin-induced cell death also triggered metacaspase activation. In conclusion, treatment of with scolopendin induced the apoptotic response, which in turn led to mitochondrial dysfunction, metacaspase activation, and cell death. The antimicrobial peptide scolopendin from the centipede demonstrated a novel apoptotic mechanism as an antifungal agent.

摘要

蜈蚣是一种节肢动物,据报道,它会产生抗菌肽作为先天免疫反应的一部分。蜈蚣抗菌肽(Scolopendin,序列为SPSEKAGLQPVGRIGRMLKK)是一种源自蜈蚣的新型抗菌肽。许多抗真菌剂具有不止一种细胞死亡机制。尽管蜈蚣抗菌肽参与膜扰动,但相应的细胞内变化仍需进一步研究。因此,我们评估了经蜈蚣抗菌肽处理的细胞的细胞形态以及细胞质和线粒体中的钙离子浓度。处理后的细胞出现皱缩,细胞质和线粒体中的钙离子稳态均被破坏。这些情况削弱了线粒体稳态,破坏了线粒体膜电位和细胞色素水平。用蜈蚣抗菌肽处理的真菌细胞表现出各种凋亡表型,如活性氧积累、磷脂酰丝氨酸暴露、染色质浓缩和核碎片化。蜈蚣抗菌肽诱导的细胞死亡还引发了类半胱天冬酶激活。总之,用蜈蚣抗菌肽处理诱导了凋亡反应,进而导致线粒体功能障碍、类半胱天冬酶激活和细胞死亡。来自蜈蚣的抗菌肽蜈蚣抗菌肽作为一种抗真菌剂展示了一种新的凋亡机制。

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