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Sec24d 基因的破坏会导致小鼠早期胚胎致死。

Disruption of the Sec24d gene results in early embryonic lethality in the mouse.

机构信息

Johns Hopkins Bayview Internal Medicine Residency Program, The Johns Hopkins University, Baltimore, Maryland, United States of America.

出版信息

PLoS One. 2013 Apr 15;8(4):e61114. doi: 10.1371/journal.pone.0061114. Print 2013.

Abstract

Transport of newly synthesized proteins from the endoplasmic reticulum (ER) to the Golgi is mediated by the coat protein complex COPII. The inner coat of COPII is assembled from heterodimers of SEC23 and SEC24. Though mice with mutations in one of the four Sec24 paralogs, Sec24b, exhibit a neural tube closure defect, deficiency in humans or mice has not yet been described for any of the other Sec24 paralogs. We now report characterization of mice with targeted disruption of Sec24d. Early embryonic lethality is observed in mice completely deficient in SEC24D, while a hypomorphic Sec24d allele permits survival to mid-embryogenesis. Mice haploinsufficient for Sec24d exhibit no phenotypic abnormality. A BAC transgene containing Sec24d rescues the embryonic lethality observed in Sec24d-null mice. These results demonstrate an absolute requirement for SEC24D expression in early mammalian development that is not compensated by the other three Sec24 paralogs. The early embryonic lethality resulting from loss of SEC24D in mice contrasts with the previously reported mild skeletal phenotype of SEC24D deficiency in zebrafish and restricted neural tube phenotype of SEC24B deficiency in mice. Taken together, these observations suggest that the multiple Sec24 paralogs have developed distinct functions over the course of vertebrate evolution.

摘要

新合成的蛋白质从内质网(ER)到高尔基体的运输是由衣壳蛋白复合物 COPII 介导的。COPII 的内衣壳由 SEC23 和 SEC24 的异二聚体组装而成。尽管在四个 Sec24 同源物之一 Sec24b 突变的小鼠中观察到神经管闭合缺陷,但在人类或小鼠中尚未描述任何其他 Sec24 同源物的缺陷。我们现在报告了靶向破坏 Sec24d 的小鼠的特征。在 SEC24D 完全缺乏的小鼠中观察到早期胚胎致死性,而功能降低的 Sec24d 等位基因允许存活到中胚层发育。Sec24d 杂合不足的小鼠没有表现出表型异常。含有 Sec24d 的 BAC 转基因可挽救 Sec24d 缺失小鼠中观察到的胚胎致死性。这些结果表明,在早期哺乳动物发育中,SEC24D 的表达是绝对必需的,而其他三个 Sec24 同源物不能代偿。由于 SEC24D 在小鼠中的缺失导致的早期胚胎致死性与先前报道的斑马鱼中 SEC24D 缺乏的轻微骨骼表型和小鼠中 SEC24B 缺乏的有限神经管表型形成对比。综上所述,这些观察结果表明,在脊椎动物进化过程中,多个 Sec24 同源物已经发展出不同的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e440/3626607/ea8a89fe157e/pone.0061114.g001.jpg

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