Department of Neonatology, Tianjin Medical University, Tianjin, P.R. China.
Department of Cardiology, Tianjin Fifth Central Hospital, Tianjin, P.R. China.
PLoS One. 2020 Nov 19;15(11):e0242606. doi: 10.1371/journal.pone.0242606. eCollection 2020.
Gestational zinc deficiency is a cause of congenital heart disease in the fetus, and sentrin/small ubiquitin-like modifier (SUMO)-specific proteases (SENPs) as deSUMOylation enzymes play a crucial role in the development of cardiac structures. However, current studies of the regulation and function of SENP in zinc-deficient status during heart development remain limited. In this study, SUMO1 modification was found to gradually decrease during heart development, and the level of SENP5 exhibited a similar trend to SUMO1 conjugation. In addition, zinc deficiency resulted in cardiac dysplasia, increased cell apoptosis, decreased cell viability, and differentiation inhibition of hiPSC-CMs. In order to investigate the function of SENP5 in zinc deficiency, hiPSC-CMs were transfected with SENP5 small interfering RNA. The negative effects of zinc lacking conditions were reversed with depletion of SENP5. It was confirmed that zinc deficiency induced abnormal differentiation of hiPSCs and increased apoptosis of hiPSC-CMs by promoting SENP5 overexpression, which led to cardiac dysplasia. Thus, it was concluded that SENP5 regulates the SUMO1 deconjugation during heart development and zinc deficiency may reduce conjugated SUMO by promoting SENP5 overexpression, which induces abnormal development of the myocardium.
妊娠期缺锌是导致胎儿先天性心脏病的一个原因,而作为去 SUMO 化酶的含串联泛素结构域蛋白(SUMO)特异性蛋白酶(SENP)在心脏结构发育中起着至关重要的作用。然而,目前关于 SENP 在心脏发育过程中缺锌状态下的调节和功能的研究仍然有限。在这项研究中,发现 SUMO1 修饰在心脏发育过程中逐渐减少,而 SENP5 的水平与 SUMO1 缀合呈相似趋势。此外,缺锌导致心脏发育不良、细胞凋亡增加、细胞活力降低以及 hiPSC-CMs 分化受到抑制。为了研究 SENP5 在缺锌条件下的功能,用 SENP5 小干扰 RNA 转染 hiPSC-CMs。通过耗尽 SENP5,锌缺乏条件下的负面影响得到了逆转。证实锌缺乏通过促进 SENP5 过表达诱导 hiPSCs 异常分化和 hiPSC-CMs 凋亡,从而导致心脏发育不良。因此,结论认为 SENP5 在心脏发育过程中调节 SUMO1 去缀合,而缺锌可能通过促进 SENP5 过表达减少缀合 SUMO,从而导致心肌发育异常。