Arenas-Mena César, Wong Kimberly Suk-Ying, Arandi-Foroshani Navid R
Department of Biology, San Diego State University, 5500 Campanile Drive, San Diego, CA 92182-4614, USA.
Evol Dev. 2007 May-Jun;9(3):231-43. doi: 10.1111/j.1525-142X.2007.00155.x.
The embryos of indirect developers generate an intermediate larval stage that nourishes the proliferation of undifferentiated multipotent cell precursors in charge of postembryonic adult formation. Multipotency affects the regulation of many genes and seems to be mediated in part by chromatin modification. Chromatin transcriptional properties are regulated by histone modification and by incorporation of peculiar histone variants. The histone variant H2A.Z is associated with transcriptionally competent chromatin and silent genes primed for activation or permanent repression. However, despite the extensive mechanistic characterizations in unicellular eukaryotes, the essential role of the highly conserved H2A.Z variant during animal embryogenesis remains obscure. We show that the expression of H2A.Z in the larvae of two distant indirectly developing marine invertebrates, a polychaete and a sea urchin, remains high in all their embryonic and postembryonic developmentally competent cell precursors, and declines during their differentiation. In particular, the expression in undifferentiated multipotent adult precursors during feeding larval stages in both organisms provides unique insight about its general association with developmental potential. Our experiments confirm previous reports indicating that the expression of H2A.Z is proliferation (DNA synthesis) independent, in contrast with the DNA synthesis dependence of "mainstream" histones. We suggest that similar H2A.Z transcriptional functions previously identified in unicellular organisms also help to maintain an open chromatin state competent for transcriptional-regulatory transactions during metazoan development.
间接发育者的胚胎会产生一个中间幼虫阶段,该阶段为负责胚胎后成体形成的未分化多能细胞前体的增殖提供营养。多能性影响许多基因的调控,并且似乎部分由染色质修饰介导。染色质转录特性受组蛋白修饰和特殊组蛋白变体的掺入调控。组蛋白变体H2A.Z与转录活性染色质以及准备激活或永久抑制的沉默基因相关。然而,尽管在单细胞真核生物中有广泛的机制表征,但高度保守的H2A.Z变体在动物胚胎发生过程中的重要作用仍不清楚。我们发现,在两种远缘的间接发育海洋无脊椎动物(一种多毛纲动物和一种海胆)的幼虫中,H2A.Z在其所有胚胎和胚胎后发育能力细胞前体中表达都很高,并在分化过程中下降。特别是,在这两种生物的摄食幼虫阶段,未分化的多能成体前体中的表达为其与发育潜能的一般关联提供了独特的见解。我们的实验证实了先前的报道,即H2A.Z的表达不依赖于增殖(DNA合成),这与“主流”组蛋白对DNA合成的依赖性形成对比。我们认为,先前在单细胞生物中鉴定出的类似H2A.Z转录功能也有助于在多细胞动物发育过程中维持一个适合转录调控交易的开放染色质状态。