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作为泉古菌门硫化叶菌目中类核相关蛋白的DNA结合蛋白Lrs14家族。

The Lrs14 family of DNA-binding proteins as nucleoid-associated proteins in the Crenarchaeal order Sulfolobales.

作者信息

De Kock Veerke, Peeters Eveline, Baes Rani

机构信息

Research Group of Microbiology, Department of Bioengineering Sciences, Vrije Universiteit Brussel, Brussels, Belgium.

出版信息

Mol Microbiol. 2025 Feb;123(2):132-142. doi: 10.1111/mmi.15260. Epub 2024 Apr 3.

Abstract

Organization of archaeal chromatin combines bacterial, eukaryotic, and unique characteristics. Many archaeal lineages harbor a wide diversity of small and highly expressed nucleoid-associated proteins, which are involved in DNA structuring. In Sulfolobales, representing model organisms within the Crenarchaeota, Sul7d, Cren7, Sul10a, and Sul12a are well-characterized nucleoid-associated proteins. Here, we combine evidence that the Lrs14 family of DNA binders is part of the repertoire of nucleoid-associated proteins in Sulfolobales. Lrs14-encoding genes are widespread within genomes of different members of the Sulfolobales, typically encoded as four to nine homologs per genome. The Lrs14 proteins harbor a winged helix-turn-helix DNA-binding domain and are typified by a coiled-coil dimerization. They are characterized by distinct sequence- and structure-based features, including redox-sensitive motifs and residues targeted for posttranslational modification, allowing a further classification of the family into five conserved clusters. Lrs14-like proteins have unique DNA-organizing properties. By binding to the DNA nonsequence specifically and in a highly cooperative manner, with a slight preference for AT-rich promoter regions, they introduce DNA kinks and are able to affect transcription of adjacent transcription units either positively or negatively. Genes encoding Lrs14-type proteins display considerable differential expression themselves in response to various stress conditions, with certain homologs being specific to a particular stressor. Taken together, we postulate that members of the Lrs14 family can be considered nucleoid-associated proteins in Sulfolobales, combining a DNA-structuring role with a global gene expression role in response to stress conditions.

摘要

古菌染色质的组织兼具细菌、真核生物和独特的特征。许多古菌谱系含有多种多样的小且高表达的类核相关蛋白,这些蛋白参与DNA的结构形成。在代表泉古菌门模式生物的硫化叶菌目中,Sul7d、Cren7、Sul10a和Sul12a是特征明确的类核相关蛋白。在此,我们整合证据表明,DNA结合蛋白Lrs14家族是硫化叶菌目类核相关蛋白库的一部分。编码Lrs14的基因广泛存在于硫化叶菌目不同成员的基因组中,通常每个基因组编码4至9个同源物。Lrs14蛋白具有一个带翼的螺旋-转角-螺旋DNA结合结构域,并以卷曲螺旋二聚化为特征。它们具有基于序列和结构的独特特征,包括氧化还原敏感基序和翻译后修饰的靶向残基,这使得该家族可进一步分为五个保守簇。Lrs14样蛋白具有独特的DNA组织特性。通过以高度协同的方式非特异性地结合DNA,对富含AT的启动子区域略有偏好,它们会导致DNA弯曲,并能够正向或负向影响相邻转录单元的转录。编码Lrs14型蛋白的基因自身在应对各种应激条件时表现出显著的差异表达,某些同源物对特定应激源具有特异性。综上所述,我们推测Lrs14家族的成员可被视为硫化叶菌目中的类核相关蛋白,它们在应对应激条件时兼具DNA结构形成作用和全局基因表达作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/445c/11841832/f20c4fa10a63/MMI-123-132-g003.jpg

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