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Influence of heart failure on nucleocytoplasmic transport in human cardiomyocytes.

机译:心力衰竭对人心肌细胞核质运输的影响。

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AIMS: The role of the cell nucleus in the development of heart failure (HF) is unknown, so the objectives of this study were to analyse the effect of HF on nucleocytoplasmic transport and density of the nuclear pore complex (NPC). METHODS AND RESULTS: A total of 51 human heart samples from ischaemic (ICM, n = 30) and dilated (DCM, n = 16) patients undergoing heart transplantation and control donors (CNT, n = 5) were analysed by western blotting. Subcellular distribution of proteins and NPC were analysed by fluorescence and electron microscopy, respectively. When we compared nucleocytoplasmic machinery protein levels according to aetiology of HF, ICM showed higher levels of importins [(IMP-beta3) (150%, P < 0.0001), IMP-alpha2 (69%, P = 0.001)] and exportins [EXP-1 (178%, P < 0.0001), EXP-4 (81%, P = 0.006)] than those of the CNT group. Furthermore, DCM also showed significant differences for IMP-beta3 (192%, P < 0.0001), IMP-alpha2 (52%, P = 0.025), and EXP-1 (228%, P < 0.0001). RanGTPase-activating proteins (RanGAP1 and RaGAP1u) were increased in ICM (76%, P = 0.005; 51%, P = 0.012) and DCM (41%, P = 0.042; 50%, P = 0.029). Furthermore, subcellular distribution of nucleocytoplasmic machinery was not altered in pathological hearts. Finally, nucleoporin (Nup) p62 was increased in ICM (80%) and DCM (109%) (P < 0.001 and P = 0.024). Nuclear pore density was comparable in pathological and CNT hearts, and ICM showed a low diameter (P = 0.005) and different structural configuration of NPC. CONCLUSION: This study shows the effect of HF on nucleocytoplasmic trafficking machinery, evidenced by higher levels of importins, exportins, Ran regulators and Nup p62 in ischaemic and dilated human hearts than those in the controls, with NPCs acquiring a different configuration and morphology in ICM.
机译:目的:尚不清楚细胞核在心力衰竭(HF)发生中的作用,因此本研究的目的是分析HF对核孔质转运和核孔复合体(NPC)密度的影响。方法和结果:通过蛋白质印迹分析了51例来自心脏移植的缺血患者(ICM,n = 30)和扩张的(DCM,n = 16)人和对照供体(CNT,n = 5)的人心脏样品。蛋白质和NPC的亚细胞分布分别通过荧光和电子显微镜分析。当我们根据HF的病因比较细胞核机制蛋白水平时,ICM显示出较高的进口蛋白[(IMP-beta3)(150%,P <0.0001),IMP-alpha2(69%,P = 0.001)]和出口蛋白[EXP -1(178%,P <0.0001),EXP-4(81%,P = 0.006)]。此外,DCM还显示出IMP-beta3(192%,P <0.0001),IMP-alpha2(52%,P = 0.025)和EXP-1(228%,P <0.0001)的显着差异。在ICM(76%,P = 0.005; 51%,P = 0.012)和DCM(41%,P = 0.042; 50%,P = 0.029)中,RanGTPase激活蛋白(RanGAP1和RaGAP1u)增加。此外,病理心脏中核细胞质机器的亚细胞分布没有改变。最后,在ICM(80%)和DCM(109%)中增加了核孔蛋白(Nup)p62(P <0.001和P = 0.024)。在病理和CNT心脏中核孔密度是可比的,并且ICM显示出较小的直径(P = 0.005)和不同的NPC结构构型。结论:本研究显示了HF对核质运输机制的影响,这是由缺血和扩张的人心脏中的importins,exportins,Ran调节剂和Nup p62的水平高于对照组所证实的,NPC在ICM中获得了不同的构型和形态。

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