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通过上调角蛋白K5/6和波形蛋白mRNA在内侧边缘上皮中的局部表达来预测次生腭形成过程中的中线融合。

Midline fusion in the formation of the secondary palate anticipated by upregulation of keratin K5/6 and localized expression of vimentin mRNA in medial edge epithelium.

作者信息

Gibbins J R, Manthey A, Tazawa Y M, Scott B, Bloch-Zupan A, Hunter N

机构信息

Department of Pathology, The University of Sydney, Australia.

出版信息

Int J Dev Biol. 1999 May;43(3):237-44.

Abstract

Secondary palatal fusion is dependent on targeted removal of the epithelium between the palatal shelves. Aseptically delivered rat embryos 15 through 18 days post coitum (dpc) were probed with DIG-labeled antisense and sense ssDNA probes for spliced exon sequences flanking intron E of cytokeratins K5/6 and spliced exon sequences flanking intron F of vimentin. Cytokeratin K5/6 expression was upregulated in the medial edge epithelium (MEE) prior to rotation of the palatal shelves and in the vomerine epithelium in the region of fusion with the palate. K5/6 expression continued in the medial epithelial seam (MES) and in epithelial islands during breakdown of the MES. Vimentin expression was not detected in the MEE prior to rotation but was specifically upregulated in the MEE following rotation and prior to midline contact and continued in the MES and in epithelial cells identifiable during the breakdown of the MES. Initiation of vimentin upregulation in the MEE prior to contact of the palatal shelves was tested by serum-free organ culture of palates from embryos at 15.5 dpc with the shelves separated by a biocompatible membrane. Vimentin upregulation occurred in the epithelium specifically in the region of anticipated contact. These results are interpreted as indicating that i) cytokeratin K5/6 expression may play a critical role in the integration of the epithelial layers of the MES to ensure subsequent merging of the mesenchyme and ii) epithelial cells in the MEE are specifically 'primed' to upregulate expression of mesenchymal genes prior to integration into and breakdown of the MES.

摘要

继发腭融合依赖于腭突间上皮的靶向清除。对妊娠15至18天(dpc)无菌分娩的大鼠胚胎,用DIG标记的反义及正义单链DNA探针探测细胞角蛋白K5/6内含子E侧翼的剪接外显子序列以及波形蛋白内含子F侧翼的剪接外显子序列。在腭突旋转前,细胞角蛋白K5/6在中边缘上皮(MEE)中表达上调,在与腭融合区域的犁骨上皮中也表达上调。在MES分解过程中,K5/6在中上皮缝(MES)和上皮岛中持续表达。在旋转前,MEE中未检测到波形蛋白表达,但在旋转后、中线接触前,MEE中波形蛋白特异性上调,并在MES及MES分解过程中可识别的上皮细胞中持续表达。通过对15.5 dpc胚胎的腭进行无血清器官培养,用生物相容性膜分隔腭突,测试了腭突接触前MEE中波形蛋白上调的起始情况。波形蛋白上调发生在上皮中,特别是在预期接触区域。这些结果被解释为表明:i)细胞角蛋白K5/6表达可能在MES上皮层整合中起关键作用,以确保间充质随后的融合;ii)MEE中的上皮细胞在整合到MES并分解之前,被特异性“启动”以上调间充质基因的表达。

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