关于Hox定时器和相关问题的评论。

IF 2.1 4区 生物学 Q3 DEVELOPMENTAL BIOLOGY Cells & Development Pub Date : 2024-12-27 DOI:10.1016/j.cdev.2024.203991
Denis Duboule, Hocine Rekaik
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引用次数: 0

摘要

2024年不仅是Hilde Pröscholdt-Mangold和Hans Spemann发现组织者的100周年,也是发现同源盒的40周年,同源盒是一个DNA区域,编码DNA结合肽,存在于几个对原肠胚至关重要的转录因子中。特别是,这个序列在羊膜Hox基因家族的39个成员中被发现,这一系列基因在原肠胚形成中期被激活,并参与沿延伸的前后体轴组织形态。在过去的30 年里,对它们在各种情况下的协调调节的研究逐渐揭示了它们令人惊讶的调节策略,这些策略基于顺式作用的机制,可以将沿着染色质纤维的一系列基因的线性分布转化为沿着我们的各种身体轴观察到的适当的形态序列。第一个调控层是由Hox计时器控制的,这是一种实现这些基因按照染色体顺序按时间顺序激活的机制。在这里,我们讨论这个机制的各个方面,强调它的一些奇异之处。
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Comments on the Hox timer and related issues.

2024 not only marked the 100th anniversary of the discovery of the organizer by Hilde Pröscholdt-Mangold and Hans Spemann, but also the 40th anniversary of the discovery of the homeobox, a DNA region encoding a DNA binding peptide present in several transcription factors of critical importance for the gastrulating embryo. In particular, this sequence is found in the 39 members of the amniote Hox gene family, a series of genes activated in mid-gastrulation and involved in organizing morphologies along the extending anterior to posterior (AP) body axis. Over the past 30 years, the study of their coordinated regulation in various contexts has progressively revealed their surprising regulatory strategies, based on mechanisms acting in-cis, which can translate a linear distribution of series of genes along the chromatin fiber into the proper sequences of morphologies observed along our various body axes. The first regulatory layer is controlled by the Hox timer, a mechanism implementing a time-sequenced activation of these genes following their chromosomal order. Here, we discuss various aspects of this mechanism, emphasizing some of its singularities.

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来源期刊
Cells & Development
Cells & Development DEVELOPMENTAL BIOLOGY-
CiteScore
3.70
自引率
0.00%
发文量
33
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