Laboratory of Biochemistry, Faculty of Medicine, University of Thessaly, Volos, Greece.
Laboratory of Internal Medicine, Faculty of Medicine, University of Thessaly, Volos, Greece.
FEBS J. 2017 Aug;284(15):2482-2500. doi: 10.1111/febs.14141. Epub 2017 Jul 8.
Scaffold attachment factor B1 (SAFB1) is an integral component of the nuclear matrix of vertebrate cells. It binds to DNA on scaffold/matrix attachment region elements, as well as to RNA and a multitude of different proteins, affecting basic cellular activities such as transcription, splicing and DNA damage repair. In the present study, we show that enhancer of rudimentary homologue (ERH) is a new molecular partner of SAFB1 and its 70% homologous paralogue, scaffold attachment factor B2 (SAFB2). ERH interacts directly in the nucleus with the C-terminal Arg-Gly-rich region of SAFB1/2 and co-localizes with it in the insoluble nuclear fraction. ERH, a small ubiquitous protein with striking homology among species and a unique structure, has also been implicated in fundamental cellular mechanisms. Our functional analyses suggest that the SAFB/ERH interaction does not affect SAFB1/2 function in transcription (e.g. as oestrogen receptor α co-repressors), although it reverses the inhibition exerted by SAFB1/2 on the splicing kinase SR protein kinase 1 (SRPK1), which also binds on the C-terminus of SAFB1/2. Accordingly, ERH silencing decreases lamin B receptor and SR protein phosphorylation, which are major SRPK1 substrates, further substantiating the role of SAFB1 and SAFB2 in the co-ordination of nuclear function.
支架附着因子 B1(SAFB1)是脊椎动物细胞核基质的一个组成部分。它与支架/基质附着区元件上的 DNA 以及 RNA 和许多不同的蛋白质结合,影响转录、剪接和 DNA 损伤修复等基本细胞活动。在本研究中,我们表明增强子 rudimentary homologue(ERH)是 SAFB1 及其 70%同源蛋白 SAFB2 的一个新的分子伴侣。ERH 在核内直接与 SAFB1/2 的 C 端 Arg-Gly-富含区相互作用,并与 SAFB1/2 共定位于不溶性核部分。ERH 是一种普遍存在的小蛋白,在物种间具有显著的同源性和独特的结构,也与基本的细胞机制有关。我们的功能分析表明,SAFB/ERH 相互作用不影响 SAFB1/2 在转录中的功能(例如作为雌激素受体α共抑制剂),尽管它逆转了 SAFB1/2 对剪接激酶 SR 蛋白激酶 1(SRPK1)的抑制作用,SRPK1 也与 SAFB1/2 的 C 端结合。因此,ERH 沉默减少了核纤层 B 受体和 SR 蛋白的磷酸化,这是 SRPK1 的主要底物,进一步证实了 SAFB1 和 SAFB2 在协调核功能中的作用。