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转录因子SCIP和Krox-20在雪旺细胞分化中标记不同阶段和细胞命运。

The Transcription Factors SCIP and Krox-20 Mark Distinct Stages and Cell Fates in Schwann Cell Differentiation.

作者信息

Zorick TS, Syroid DE, Arroyo E, Scherer SS, Lemke G

机构信息

Molecular Neurobiology Laboratory, The Salk Institute, La Jolla, California, 92037

出版信息

Mol Cell Neurosci. 1996 Aug;8(2/3):129-45. doi: 10.1006/mcne.1996.0052.

DOI:10.1006/mcne.1996.0052
PMID:8954628
Abstract

We have studied the transcription factors SCIP and Krox-20 in differentiating Schwann cells-during normal development, in experimentally induced degenerating and regenerating peripheral nerves, and in cell culture-and have compared the expression of these regulators to a battery of genes that mark distinct stages in Schwann cell differentiation. In the myelinating Schwann cell lineage, we find that SCIP is initially induced by contact with axons and first appears near the last round of cell division in immature cells. This expression is transient-it is maximal in "promyelinating" cells and is then extinguished as Schwann cells overtly differentiate and myelinate axons. In contrast, Krox-20 appears in cells 24-36 h after they become SCIP+ and continues to be expressed in mature myelinating cells. These differences in regulation are seen in normal development, in regenerating nerves following nerve crush, and in cultured Schwann cells stimulated to adopt a myelination phenotype by elevation of intracellular cyclic AMP. Importantly, transient SCIP expression is also observed in the nonmyelinating Schwann cell lineage, but Krox-20 expression is not. Together with the myelination phenotypes exhibited by SCIP and Krox-20 mutant mice, these results suggest that SCIP preferentially acts during the predifferentiated phases of Schwann cell development, while in contrast, Krox-20 is associated with the later commitment to myelination and may therefore function as a direct transactivator of myelination genes.

摘要

我们研究了转录因子SCIP和Krox-20在雪旺细胞分化过程中的情况——在正常发育、实验诱导的退化和再生的外周神经以及细胞培养中——并将这些调节因子的表达与一系列标记雪旺细胞分化不同阶段的基因进行了比较。在形成髓鞘的雪旺细胞谱系中,我们发现SCIP最初是由与轴突接触诱导产生的,并且最初出现在未成熟细胞最后一轮细胞分裂附近。这种表达是短暂的——在“前髓鞘形成”细胞中最高,然后随着雪旺细胞明显分化并髓鞘化轴突而消失。相比之下,Krox-20在细胞成为SCIP+后24 - 36小时出现,并在成熟的髓鞘形成细胞中持续表达。在正常发育、神经挤压后的再生神经以及通过提高细胞内环磷酸腺苷刺激而采用髓鞘化表型的培养雪旺细胞中都能看到这些调节上的差异。重要的是,在非髓鞘形成的雪旺细胞谱系中也观察到了短暂的SCIP表达,但没有观察到Krox-20表达。结合SCIP和Krox-20突变小鼠所表现出的髓鞘化表型,这些结果表明SCIP在雪旺细胞发育的预分化阶段优先发挥作用,而相比之下,Krox-20与后期的髓鞘化相关,因此可能作为髓鞘化基因的直接反式激活因子发挥作用。

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The Transcription Factors SCIP and Krox-20 Mark Distinct Stages and Cell Fates in Schwann Cell Differentiation.转录因子SCIP和Krox-20在雪旺细胞分化中标记不同阶段和细胞命运。
Mol Cell Neurosci. 1996 Aug;8(2/3):129-45. doi: 10.1006/mcne.1996.0052.
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