Institute of Cytology of the Russian Academy of Sciences, Laboratory of Molecular Biology of Stem Cells, Tikhoretsky Av. 4, 194064 St. Petersburg, Russia.
Int J Mol Sci. 2020 Oct 26;21(21):7948. doi: 10.3390/ijms21217948.
The functioning of DNA in the cell nucleus is ensured by a multitude of proteins, whose interactions with DNA as well as with other proteins lead to the formation of a complicated, organized, and quite dynamic system known as chromatin. This review is devoted to the description of properties and structure of the progenitors of the most abundant non-histone protein of the HMGB family-the HmgB1 protein. The proteins of the HMGB family are also known as "architectural factors" of chromatin, which play an important role in gene expression, transcription, DNA replication, and repair. However, as soon as HmgB1 goes outside the nucleus, it acquires completely different functions, post-translational modifications, and change of its redox state. Despite a lot of evidence of the functional activity of HmgB1, there are still many issues to be solved related to the mechanisms of the influence of HmgB1 on the development and treatment of different diseases-from oncological and cardiovascular diseases to pathologies during pregnancy and childbirth. Here, we describe molecular structure of the HmgB1 protein and discuss general mechanisms of its interactions with other proteins and DNA in cell.
细胞核中 DNA 的功能是由多种蛋白质来保证的,这些蛋白质与 DNA 以及其他蛋白质的相互作用导致了一种复杂、有组织且相当动态的系统,即染色质。这篇综述致力于描述 HMGB 家族中含量最丰富的非组蛋白——HmgB1 蛋白的前体的特性和结构。HMGB 家族的蛋白质也被称为染色质的“结构因子”,它们在基因表达、转录、DNA 复制和修复中发挥着重要作用。然而,一旦 HmgB1 离开细胞核,它就会获得完全不同的功能、翻译后修饰和氧化还原状态的改变。尽管有大量关于 HmgB1 功能活性的证据,但仍有许多问题有待解决,这些问题与 HmgB1 对不同疾病(从肿瘤和心血管疾病到妊娠和分娩期间的病理)的发展和治疗的影响机制有关。在这里,我们描述了 HmgB1 蛋白的分子结构,并讨论了其与细胞内其他蛋白质和 DNA 相互作用的一般机制。