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egl-27通过调节Hox基因表达和Hox蛋白功能,在秀丽隐杆线虫中产生细胞融合的前后模式。

egl-27 generates anteroposterior patterns of cell fusion in C. elegans by regulating Hox gene expression and Hox protein function.

作者信息

Ch'ng Q, Kenyon C

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco, San Francisco, CA 94143-0448, USA.

出版信息

Development. 1999 Aug;126(15):3303-12. doi: 10.1242/dev.126.15.3303.

Abstract

Hox genes pattern the fates of the ventral ectodermal Pn.p cells that lie along the anteroposterior (A/P) body axis of C. elegans. In these cells, the Hox genes are expressed in sequential overlapping domains where they control the ability of each Pn.p cell to fuse with the surrounding syncytial epidermis. The activities of Hox proteins are sex-specific in this tissue, resulting in sex-specific patterns of cell fusion: in hermaphrodites, the mid-body cells remain unfused, whereas in males, alternating domains of syncytial and unfused cells develop. We have found that the gene egl-27, which encodes a C. elegans homologue of a chromatin regulatory factor, specifies these patterns by regulating both Hox gene expression and Hox protein function. In egl-27 mutants, the expression domains of Hox genes in these cells are shifted posteriorly, suggesting that egl-27 influences A/P positional information. In addition, egl-27 controls Hox protein function in the Pn.p cells in two ways: in hermaphrodites it inhibits MAB-5 activity, whereas in males it permits a combinatorial interaction between LIN-39 and MAB-5. Thus, by selectively modifying the activities of Hox proteins, egl-27 elaborates a simple Hox expression pattern into complex patterns of cell fates. Taken together, these results implicate egl-27 in the diversification of cell fates along the A/P axis and suggest that chromatin reorganization is necessary for controlling Hox gene expression and Hox protein function.

摘要

Hox基因决定了秀丽隐杆线虫沿前后(A/P)身体轴排列的腹侧外胚层Pn.p细胞的命运。在这些细胞中,Hox基因在连续重叠的区域表达,在这些区域它们控制每个Pn.p细胞与周围合胞体表皮融合的能力。Hox蛋白的活性在该组织中具有性别特异性,导致细胞融合的性别特异性模式:在雌雄同体中,身体中部的细胞保持未融合状态,而在雄性中,则形成合胞体和未融合细胞交替的区域。我们发现,基因egl-27编码一种染色质调节因子的秀丽隐杆线虫同源物,它通过调节Hox基因表达和Hox蛋白功能来决定这些模式。在egl-27突变体中,这些细胞中Hox基因的表达区域向后移动,这表明egl-27影响A/P位置信息。此外,egl-27以两种方式控制Pn.p细胞中Hox蛋白的功能:在雌雄同体中,它抑制MAB-5的活性,而在雄性中,它允许LIN-39和MAB-5之间进行组合相互作用。因此,通过选择性地改变Hox蛋白的活性,egl-27将简单的Hox表达模式细化为复杂的细胞命运模式。综上所述,这些结果表明egl-27参与了沿A/P轴的细胞命运多样化,并表明染色质重组对于控制Hox基因表达和Hox蛋白功能是必要的。

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