Alzugaray María Eugenia, Gavazzi María Victoria, Griffo Lucía, Ronderos Jorge Rafael
Cátedra de Histología y Embriología Animal, Facultad de Ciencias Naturales y Museo, Universidad Nacional de La Plata, La Plata, Argentina.
CONICET, Buenos Aires, Argentina.
Sci Rep. 2025 Feb 22;15(1):6440. doi: 10.1038/s41598-025-91048-2.
Cells are constantly exposed to mechanical forces. These stimuli must be detected and transduced to maintain homeostasis. Due that reason, mechano-sensory systems (MS) are present in all the organisms to generate appropriate responses. Piezo proteins are a recently discovered family of mechano-gated ion channels that responds to mechanical changes of the plasma membrane, allowing the influx of cations, mainly Ca. Piezo MS channels are widely represented in Metazoa, acting in several physiological systems. Hydra sp. is a freshwater member of the phylum Cnidaria which is assumed as the sister group of Bilateria. Despite the existence of Piezo channels in Hydra is known, their physiological roles remain unknown. In this work we delve into the physiological relevance of MS Piezo in responses associated to mechanical stimuli in Hydra sp. We analysed the effects of Jedi1 (a specific agonist of Piezo1) on the contractile behaviours, and cnidocyst discharge, and compared them with responses caused by natural stimuli. The results show that the activation of Piezo channels increases the contractile behaviour, stimulating the occurrence of contraction burst, a sudden kind of retraction observed in response to touch and osmotic stress. Cnidocyst discharge was also induced by Jedi1, resembling the response caused by the contact of the prey. The effects of both Jedi1 and natural stimuli were avoided in the presence of the inhibitor of MS channels GdCl. The bioinformatic analysis shows that the protein predicted by Hydra genome has the characteristic motifs of Piezo proteins. These results are consistent with the existence of Piezo channels in Hydra, unveiling their physiological roles. Because of the relevance of Piezo channels in several pathological conditions and the high level of conservation in metazoans, Hydra could provide a significative experimental model to assay biological and pharmacological issues.
细胞不断受到机械力的作用。必须检测并传导这些刺激以维持体内平衡。因此,所有生物体中都存在机械传感系统(MS)以产生适当的反应。Piezo蛋白是最近发现的一类机械门控离子通道家族,其对质膜的机械变化作出反应,允许阳离子(主要是Ca)内流。Piezo MS通道在后生动物中广泛存在,作用于多个生理系统。水螅属是刺胞动物门的一种淡水成员,被认为是两侧对称动物的姐妹群。尽管已知水螅中存在Piezo通道,但其生理作用仍不清楚。在这项工作中,我们深入研究了水螅属中MS Piezo在与机械刺激相关反应中的生理相关性。我们分析了Jedi1(Piezo1的一种特异性激动剂)对收缩行为和刺丝囊排放的影响,并将其与自然刺激引起的反应进行比较。结果表明,Piezo通道的激活增加了收缩行为,刺激了收缩爆发的发生,收缩爆发是在对触摸和渗透压应激的反应中观察到的一种突然回缩。Jedi1也诱导了刺丝囊排放,类似于猎物接触引起的反应。在存在MS通道抑制剂GdCl的情况下,Jedi1和自然刺激的影响均被避免。生物信息学分析表明,水螅基因组预测的蛋白质具有Piezo蛋白的特征基序。这些结果与水螅中存在Piezo通道一致,揭示了它们的生理作用。由于Piezo通道在几种病理状况中的相关性以及后生动物中的高度保守性,水螅可以提供一个有意义的实验模型来分析生物学和药理学问题。