Department of Molecular Oncology, Georgetown University, Washington DC.
Department of Pediatric Hematology-Oncology, Yale School of Medicine, New Haven, CT.
Exp Hematol. 2022 Oct;114:22-32. doi: 10.1016/j.exphem.2022.08.001. Epub 2022 Aug 13.
Erythroid nuclear condensation is a complex process in which compaction to one-tenth its original size occurs in an active nucleus simultaneously undergoing transcription and cell division. We previously found that the nuclear exportin Exportin7 (Xpo7), which is erythroid- specific and highly induced during terminal erythropoiesis, facilitates nuclear condensation. We also identified a previously unannotated, erythroid-specific isoform of Xpo7 (Xpo7B) containing a novel first exon Xpo7-1b expressed only in late Ter119 erythroblasts. To better understand the functional difference between the erythroid Xpo7B isoform and the ubiquitous isoform (Xpo7A) containing the original first exon Xpo7-1a, we created gene-targeted mouse models lacking either exon Xpo7-1a or Xpo7-1b, or both exons 4 and 5, which are completely null for Xpo7 expression. We found that deficiency in Xpo7A does not affect steady-state nor stress erythropoiesis. In contrast, mice lacking the erythroid isoform, Xpo7B, exhibit a mild anemia as well as altered stress erythropoiesis. Complete Xpo7 deficiency resulted in partially penetrant embryonic lethality at the stage when definitive erythropoiesis is prominent in the fetal liver. Inducible complete knockdown of Xpo7 confirms that both steady-state erythropoiesis and stress erythropoiesis are affected. We also observe that Xpo7 deficiency downregulates the expression of important stress response factors, such as Gdf15 and Smad3. We conclude that the erythroid-specific isoform of Xpo7 is important for both steady-state and stress erythropoiesis in mice.
红细胞核浓缩是一个复杂的过程,在此过程中,活跃的细胞核在进行转录和细胞分裂的同时,会被压缩到原来大小的十分之一。我们之前发现,核输出蛋白 Exportin7(Xpo7)在红细胞成熟过程中特异性表达并高度诱导,促进核浓缩。我们还鉴定了一种以前未注释的、红细胞特异性的 Xpo7 同工型(Xpo7B),它含有一个新的第一外显子 Xpo7-1b,仅在晚期 Ter119 红细胞中表达。为了更好地理解红细胞 Xpo7B 同工型与普遍存在的同工型(Xpo7A)之间的功能差异,我们创建了基因靶向小鼠模型,这些模型缺乏原始第一外显子 Xpo7-1a 或 Xpo7-1b,或同时缺乏外显子 4 和 5,这完全使 Xpo7 的表达缺失。我们发现,Xpo7A 的缺失不会影响稳态或应激性红细胞生成。相比之下,缺乏红细胞同工型 Xpo7B 的小鼠表现出轻度贫血以及应激性红细胞生成改变。完全缺失 Xpo7 导致在胎儿肝脏中明显出现定型红细胞生成的阶段出现部分穿透性胚胎致死。诱导性完全敲低 Xpo7 证实稳态红细胞生成和应激性红细胞生成均受到影响。我们还观察到 Xpo7 缺失下调了重要应激反应因子的表达,如 Gdf15 和 Smad3。我们得出结论,Xpo7 的红细胞特异性同工型对小鼠的稳态和应激性红细胞生成都很重要。