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Hspa4l/Hspa4 双突变小鼠的呼吸窘迫和早期新生儿致死性。

Respiratory distress and early neonatal lethality in Hspa4l/Hspa4 double-mutant mice.

机构信息

1 Institute of Human Genetics, and.

出版信息

Am J Respir Cell Mol Biol. 2014 Apr;50(4):817-24. doi: 10.1165/rcmb.2013-0132OC.

Abstract

Heat shock proteins HSPA4L and HSPA4 are closely related members of the HSP110 family and act as cochaperones. We generated Hspa4l(-/-)Hspa4(-/-) mice to investigate a functional complementarity between HSPA4L and HSPA4 during embryonic development. Hspa4l(-/-)Hspa4(-/-) embryos exhibited marked pulmonary hypoplasia and neonatal death. Compared with lungs of wild-type, Hspa4l(-/-), and Hspa4(-/-) embryos, Hspa4l(-/-)Hspa4(-/-) lungs were characterized by diminished saccular spaces and increased mesenchymal septa. Mesenchymal hypercellularity was determined to be due to an increased cell proliferation index and decreased cell death. A significant increase in expression levels of prosurvival protein B cell leukemia/lymphoma 2 may be the cause for inhibition of apoptotic process in lungs of Hspa4(-/-)Hspa4l(-/-) embryos. Accumulation of glycogen and diminished expression of surfactant protein B, prosurfactant protein C, and aquaporin 5 in saccular epithelium suggested impaired maturation of type II and type I pneumocytes in the Hspa4l(-/-)Hspa4(-/-) lungs. Further experiments showed a significant accumulation of ubiquitinated proteins in the lungs of Hspa4l(-/-)Hspa4(-/-) embryos, indicating an impaired chaperone activity. Our study demonstrates that HSPA4L and HSPA4 collaborate in embryonic lung maturation, which is necessary for adaptation to air breathing at birth.

摘要

热休克蛋白 HSPA4L 和 HSPA4 是 HSP110 家族的密切相关成员,作为共伴侣发挥作用。我们生成了 Hspa4l(-/-)Hspa4(-/-) 小鼠,以研究 HSP110 家族在胚胎发育过程中 HSPA4L 和 HSPA4 之间的功能互补性。Hspa4l(-/-)Hspa4(-/-) 胚胎表现出明显的肺发育不全和新生儿死亡。与野生型、Hspa4l(-/-)和 Hspa4(-/-)胚胎的肺相比,Hspa4l(-/-)Hspa4(-/-) 胚胎的囊泡空间减小,间质隔增大。间质细胞增生被确定为细胞增殖指数增加和细胞死亡减少的结果。存活蛋白 B 细胞白血病/淋巴瘤 2 表达水平的显著增加可能是 Hspa4(-/-)Hspa4l(-/-) 胚胎中凋亡过程受到抑制的原因。囊泡上皮中糖原的积累和表面活性蛋白 B、前表面活性蛋白 C 和水通道蛋白 5 的表达减少表明 Hspa4l(-/-)Hspa4(-/-) 肺中 II 型和 I 型肺泡细胞的成熟受损。进一步的实验表明,Hspa4l(-/-)Hspa4(-/-) 胚胎的肺中存在大量泛素化蛋白的积累,表明伴侣活性受损。我们的研究表明,HSPA4L 和 HSPA4 共同参与胚胎肺的成熟,这对于出生时适应空气呼吸是必要的。

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