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对 Fra1(AP-1 转录因子家族的一员)的金属处理反应,在石斑鱼海胆胚胎中的研究。

Response to metals treatment of Fra1, a member of the AP-1 transcription factor family, in P. lividus sea urchin embryos.

机构信息

Consiglio Nazionale delle Ricerche, Istituto di Biomedicina e Immunologia Molecolare "A. Monroy", Via Ugo La Malfa 153, 90146, Palermo, Italy.

Consiglio Nazionale delle Ricerche, Istituto di Biomedicina e Immunologia Molecolare "A. Monroy", Via Ugo La Malfa 153, 90146, Palermo, Italy.

出版信息

Mar Environ Res. 2018 Aug;139:99-112. doi: 10.1016/j.marenvres.2018.05.003. Epub 2018 May 5.

Abstract

Lithium (Li), Nickel (Ni), and Zinc (Zn) are metals normally present in the seawater, although they can have adverse effects on the marine ecosystem at high concentrations by interfering with many biological processes. These metals are toxic for sea urchin embryos, affecting their morphology and developmental pathways. In particular, they perturb differently the correct organization of the embryonic axes (animal-vegetal, dorso-ventral): Li is a vegetalizing agent and Ni disrupts the dorso-ventral axis, while Zn has an animalizing effect. To deeply address the response of Paracentrotus lividus embryos to these metals, we studied the expression profiling of Pl-Fra transcription factor (TF), relating it to Pl-jun, a potential partner for AP-1 complex formation, and to Pl-MT, known to be an AP-1 target and to have a protective role against heavy metals. The AP-1 TFs are found throughout the animal kingdom and are involved in many cellular events, i.e. cell proliferation and differentiation, immune and stress responses, cancer growth. Here, we isolated the complete Pl-Fra cDNA and showed that Pl-Fra transcript, already present in the unfertilized eggs, was newly synthesized from the blastula stage, while its spatial distribution was mainly observed in skeletogenic cells, similarly to Pl-jun. Interestingly, Pl-Fra expression was induced by the different metals and the induction kinetics revealed its persistent expression during treatments. Moreover, its temporal and spatial behavior in response to the three metals was comparable to that of Pl-jun and Pl-MT. The understanding of AP-1 functions in invertebrates may provide new knowledge about the mechanisms of response to metal injuries, as well as it might lead to acknowledge the TFs as new type of biomarkers for the evaluation of hazards in polluted environment.

摘要

锂(Li)、镍(Ni)和锌(Zn)是正常存在于海水中的金属,尽管它们在高浓度下通过干扰许多生物过程而对海洋生态系统产生不利影响。这些金属对海胆胚胎有毒,影响其形态和发育途径。特别是,它们以不同的方式扰乱胚胎轴(动物-植物,背-腹)的正确组织:Li 是一种植物化剂,Ni 破坏背腹轴,而 Zn 具有动物化作用。为了深入研究 Paracentrotus lividus 胚胎对这些金属的反应,我们研究了 Pl-Fra 转录因子(TF)的表达谱,将其与 Pl-jun 相关联,Pl-jun 是 AP-1 复合物形成的潜在伴侣,与 Pl-MT 相关联,Pl-MT 已知是 AP-1 的靶标,并具有抵抗重金属的保护作用。AP-1 TF 存在于整个动物界,参与许多细胞事件,即细胞增殖和分化、免疫和应激反应、癌症生长。在这里,我们分离出完整的 Pl-Fra cDNA,并表明 Pl-Fra 转录本,已经存在于未受精卵中,从囊胚阶段开始新合成,而其空间分布主要在骨骼生成细胞中观察到,类似于 Pl-jun。有趣的是,不同的金属诱导 Pl-Fra 表达,诱导动力学显示其在处理过程中持续表达。此外,其对三种金属的时空行为与 Pl-jun 和 Pl-MT 的行为相当。在无脊椎动物中了解 AP-1 功能可能提供有关对金属损伤反应机制的新知识,并且可以将 TFs 识别为评估污染环境中危害的新型生物标志物。

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