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反式作用因子调节CD44剪接变体的表达。

Trans-acting factors regulate the expression of CD44 splice variants.

作者信息

Konig H, Moll J, Ponta H, Herrlich P

机构信息

Forschungszentrum Karlsruhe der Helmholtz-Gemeinschaft, Institut für Genetik, Postfach 3640, 76021 Karlsruhe, Germany.

出版信息

EMBO J. 1996 Aug 1;15(15):4030-9.

Abstract

Variant isoforms of the cell surface glycoprotein CD44 (CD44v) are expressed during development, in selected adult tissues and in certain metastatic tumor cells. CD44v differ from the standard isoform (CD44s) by up to ten additional exon sequences included by alternative splicing. By cell fusion experiments, we have obtained evidence for the existence of cell-type specific trans-acting factors recruiting CD44 variant exon sequences. Stable cell hybrids of CD44s and CD44v expressing cells indicated a dominant mechanism for variant-exon inclusion. In transient interspecies heterokaryons of human keratinocytes and rat fibroblasts, the ability of the keratinocytes to include all variant exon sequences in CD44 was conferred completely on the rat fibroblast nucleus. Fusions of cells with complex CD44 splice patterns do not permit interpretation of splice control by the relative abundance of a single trans-acting factor, but rather by (a) positively acting factor(s) recruiting variant exon sequences in the 3' to 5' direction and additional factors selecting individual exons. Since the pancreatic carcinoma cell line BSp73ASML (in contrast to the cervix carcinoma cell lines SiHa and ME180) could not transfer its specific splice pattern in cell fusions, we conclude that in some tumors, splicing is also controlled by mutation of cis-acting recognition sites.

摘要

细胞表面糖蛋白CD44的可变亚型(CD44v)在发育过程中、特定的成年组织以及某些转移性肿瘤细胞中表达。CD44v与标准亚型(CD44s)的不同之处在于,通过可变剪接额外包含多达十个外显子序列。通过细胞融合实验,我们获得了证据,证明存在招募CD44可变外显子序列的细胞类型特异性反式作用因子。表达CD44s和CD44v的细胞的稳定细胞杂种表明了可变外显子包含的主导机制。在人角质形成细胞和大鼠成纤维细胞的瞬时种间异核体中,角质形成细胞在CD44中包含所有可变外显子序列的能力完全赋予了大鼠成纤维细胞核。具有复杂CD44剪接模式的细胞融合不允许通过单个反式作用因子的相对丰度来解释剪接控制,而是通过一个(或多个)在3'至5'方向招募可变外显子序列的正向作用因子以及选择单个外显子的其他因子来解释。由于胰腺癌细胞系BSp73ASML(与宫颈癌细胞系SiHa和ME180不同)在细胞融合中不能传递其特定的剪接模式,我们得出结论,在某些肿瘤中,剪接也受顺式作用识别位点突变的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4164/452123/dfccefea0f39/emboj00015-0269-a.jpg

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