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后脑分割过程中Sek-1和Krox-20基因表达的渐进性空间限制。

Progressive spatial restriction of Sek-1 and Krox-20 gene expression during hindbrain segmentation.

作者信息

Irving C, Nieto M A, DasGupta R, Charnay P, Wilkinson D G

机构信息

Division of Developmental Neurobiology, National Institute for Medical Research, Mill Hill, London, United Kingdom.

出版信息

Dev Biol. 1996 Jan 10;173(1):26-38. doi: 10.1006/dbio.1996.0004.

Abstract

After segmentation of the vertebrate hindbrain, expression of the zinc-finger gene Krox-20 and the receptor tyrosine kinase gene Sek-1 is precisely restricted to rhombomeres (r) 3 and 5. This precise segmental expression is likely to reflect a critical requirement for these rhombomeres to acquire a distinct and homogeneous identity and raises the question as to how this relates to the intermingling and restriction of cell movement during segmentation. We have analysed Krox-20 and Sek-1 expression in the mouse and chick hindbrain at single-cell resolution using whole-mount in situ hybridisation and immunocytochemistry. We find that, in the mouse, the presumptive r3 and r5 expression domains each arise as narrow stripes that then broaden, suggestive of a recruitment of cells to an r3/r5 identity and/or a segmental regulation of cell proliferation. In addition, we find that expression of these genes initially occurs in fuzzy domains, and that these are progressively restricted to segmental domains, although occasional "violating" cells are observed even after segmentation. We propose that the establishment and maintenance of these segmental domains may involve both a dynamic regulation of r3/r5 identity and the restriction of cell movement across rhombomere boundaries.

摘要

在脊椎动物后脑分割之后,锌指基因Krox-20和受体酪氨酸激酶基因Sek-1的表达精确地局限于菱脑节(r)3和5。这种精确的节段性表达可能反映了这些菱脑节获得独特且一致特性的关键需求,并引发了一个问题,即这与分割过程中细胞运动的混合与限制是如何相关的。我们使用整装原位杂交和免疫细胞化学技术,以单细胞分辨率分析了小鼠和鸡后脑的Krox-20和Sek-1表达。我们发现,在小鼠中,假定的r3和r5表达域最初都呈现为狭窄的条带,随后变宽,这表明细胞被招募到r3/r5特性中,和/或细胞增殖的节段性调控。此外,我们发现这些基因的表达最初出现在模糊的区域,并且这些区域逐渐局限于节段性区域,尽管即使在分割后偶尔也会观察到“违规”细胞。我们提出,这些节段性区域的建立和维持可能涉及r3/r5特性的动态调控以及细胞跨菱脑节边界运动的限制。

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