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Visceral regeneration in a sea cucumber involves extensive expression of survivin and mortalin homologs in the mesothelium

机译:海参内脏再生涉及间皮中survivin和mortalin同系物的广泛表达

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Background The proper balance of cell division and cell death is of crucial importance for all kinds of developmental processes and for maintaining tissue homeostasis in mature tissues. Dysregulation of this balance often results in severe pathologies, such as cancer. There is a growing interest in understanding the factors that govern the interplay between cell death and proliferation under various conditions. Survivin and mortalin are genes that are known to be implicated in both mitosis and apoptosis and are often expressed in tumors. Results The present study takes advantage of the ability of the sea cucumber Holothuria glaberrima Selenka, 1867 (Holothuroidea, Aspidochirota) to discard its viscera and completely regrow them. This visceral regeneration involves an extensive expression of survivin and mortalin transcripts in the gut mesothelium (the outer tissue layer of the digestive tube), which coincides in time with drastic de-differentiation and a burst in cell division and apoptosis. Double labeling experiments (in situ hybridization combined with TUNEL assay or with BrdU immunohistochemistry) suggest that both genes support cell proliferation, while survivin might also be involved in suppression of the programmed cell death. Conclusions Visceral regeneration in the sea cucumber H. glaberrima is accompanied by elevated levels of cell division and cell death, and, moreover, involves expression of pro-cancer genes, such as survivin and mortalin, which are known to support proliferation and inhibit apoptosis. Nevertheless, once regeneration is completed and the expression pattern of both genes returns to normal, the regrown digestive tube shows no anomalies. This strongly suggests that sea cucumbers must possess some robust cancer-suppression mechanisms that allow rapid re-growth of the adult tissues without leading to runaway tumor development.
机译:背景技术细胞分裂与细胞死亡的适当平衡对于各种发育过程和维持成熟组织的组织稳态而言至关重要。这种平衡的失调通常会导致严重的疾病,例如癌症。人们越来越了解在各种条件下决定细胞死亡与增殖之间相互作用的因素。 Survivin和mortalin是已知与有丝分裂和细胞凋亡相关的基因,通常在肿瘤中表达。结果本研究利用了1867年海参Holothuria glaberrima Selenka(Holothuroidea,Aspidochirota)丢弃内脏并使其完全再生的能力。这种内脏再生涉及肠上皮(消化管的外部组织层)中survivin和mortalin转录物的大量表达,这与剧烈的去分化以及细胞分裂和凋亡的爆发相吻合。双重标记实验(与TUNEL分析或BrdU免疫组织化学结合的原位杂交)表明这两个基因均支持细胞增殖,而survivin可能也参与了程序性细胞死亡的抑制。结论海参H. glaberrima的内脏再生伴随着细胞分裂和细胞死亡水平的提高,而且还涉及已知的前癌基因如survivin和mortalin的表达,这些基因支持增殖并抑制细胞凋亡。然而,一旦再生完成并且两个基因的表达模式恢复正常,再生长的消化管就没有异常。这有力地表明,海参必须具有一些强大的癌症抑制机制,以使成年组织快速重新生长,而不会导致失控的肿瘤发展。

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