Instituto de Ciências Biomédicas, Universidade Federal Do Rio de Janeiro, Av. Carlos Chagas Filho 373 Bloco F Sala F2-01, Rio de Janeiro, 21941-902, Brazil; Programa de Pós-graduação Em Medicina (Anatomia Patológica), Faculdade de Medicina, Universidade Federal Do Rio de Janeiro, R. Prof. Rodolpho Paulo Rocco, 255, Rio de Janeiro, 21941-590, Brazil.
Instituto de Ciências Biomédicas, Universidade Federal Do Rio de Janeiro, Av. Carlos Chagas Filho 373 Bloco F Sala F2-01, Rio de Janeiro, 21941-902, Brazil.
Dev Comp Immunol. 2021 Jan;114:103840. doi: 10.1016/j.dci.2020.103840. Epub 2020 Aug 25.
In the present work we have focused on the Histone Deacetylase (HDAC) control of myeloid cells behavior during Xenopus tail regeneration. Here we show that myeloid differentiation is crucial to modulate the regenerative ability of Xenopus tadpoles in a HDAC activity-dependent fashion. HDAC activity inhibition during the first wave of myeloid differentiation disrupted myeloid cells dynamics in the regenerative bud as well the mRNA expression pattern of myeloid markers, such as LURP, MPOX, Spib and mmp7. We also functionally bridge the spatial and temporal dynamics of lipid droplets, the main platform of lipid mediators synthesis in myeloid cells during the inflammatory response, and the regenerative ability of Xenopus tadpoles. In addition, we showed that 15-LOX activity is necessary during tail regeneration. Taken together our results support a role for the epigenetic control of myeloid behavior during tissue and organ regeneration, which may positively impact translational approaches for regenerative medicine.
在本工作中,我们专注于组蛋白去乙酰化酶(HDAC)对爪蟾尾巴再生过程中髓系细胞行为的控制。我们在此表明,髓系分化对于以 HDAC 活性依赖性方式调节爪蟾蝌蚪的再生能力至关重要。在第一波髓系分化期间抑制 HDAC 活性会破坏再生芽中的髓系细胞动力学以及髓系标志物(如 LURP、MPOX、Spib 和 mmp7)的 mRNA 表达模式。我们还在功能上连接了脂质滴的时空动力学,脂质滴是髓系细胞在炎症反应期间合成脂质介质的主要平台,以及爪蟾蝌蚪的再生能力。此外,我们还表明,15-LOX 活性在尾巴再生过程中是必需的。总之,我们的研究结果支持在组织和器官再生过程中对髓系行为进行表观遗传控制的作用,这可能对再生医学的转化方法产生积极影响。