Stevens Kathryn M, Warnecke Tobias
Medical Research Council London Institute of Medical Sciences, London, United Kingdom; Institute of Clinical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom.
Medical Research Council London Institute of Medical Sciences, London, United Kingdom; Institute of Clinical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom.
Semin Cell Dev Biol. 2023 Feb 15;135:50-58. doi: 10.1016/j.semcdb.2022.02.016. Epub 2022 Feb 25.
Exchanging core histones in the nucleosome for paralogous variants can have important functional ramifications. Many of these variants, and their physiological roles, have been characterized in exquisite detail in model eukaryotes, including humans. In comparison, our knowledge of histone biology in archaea remains rudimentary. This is true in particular for our knowledge of histone variants. Many archaea encode several histone genes that differ in sequence, but do these paralogs make distinct, adaptive contributions to genome organization and regulation in a manner comparable to eukaryotes? Below, we review what we know about histone variants in archaea at the level of structure, regulation, and evolution. In all areas, our knowledge pales when compared to the wealth of insight that has been gathered for eukaryotes. Recent findings, however, provide tantalizing glimpses into a rich and largely undiscovered country that is at times familiar and eukaryote-like and at times strange and uniquely archaeal. We sketch a preliminary roadmap for further exploration of this country; an undertaking that may ultimately shed light not only on chromatin biology in archaea but also on the origin of histone-based chromatin in eukaryotes.
在核小体中,将核心组蛋白替换为同源变体可能会产生重要的功能影响。其中许多变体及其生理作用,已经在包括人类在内的模式真核生物中得到了极为详细的表征。相比之下,我们对古菌中组蛋白生物学的了解仍然很基础。这在我们对组蛋白变体的了解方面尤为如此。许多古菌编码多个序列不同的组蛋白基因,但这些旁系同源物是否像真核生物那样,对基因组组织和调控做出独特的适应性贡献呢?下面,我们将从结构、调控和进化层面回顾我们对古菌中组蛋白变体的了解。与真核生物所积累的丰富见解相比,我们在所有领域的知识都显得微不足道。然而,最近的发现为一个丰富且大多未被探索的领域提供了诱人的线索,这个领域有时似曾相识且类似真核生物,有时又陌生且独具古菌特色。我们勾勒了进一步探索这个领域的初步路线图;这项工作最终不仅可能揭示古菌中的染色质生物学,还可能揭示真核生物中基于组蛋白的染色质的起源。