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Mammalian Bcnt/Cfdp1 a potential epigenetic factor characterized by an acidic stretch in the disordered N-terminal and Ser250 phosphorylation in the conserved C-terminal regions

机译:哺乳动物Bcnt / Cfdp1潜在的表观遗传因子特征在于无序N端呈酸性延伸而保守C端区域呈Ser250磷酸化

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摘要

The BCNT (Bucentaur) superfamily is classified by an uncharacteristic conserved sequence of ∼80 amino acids (aa) at the C-terminus, BCNT-C (the conserved C-terminal region of Bcnt/Cfdp1). Whereas the yeast Swc5 and Drosophila Yeti homologues play crucial roles in chromatin remodelling organization, mammalian Bcnt/Cfdp1 (craniofacial developmental protein 1) remains poorly understood. The protein, which lacks cysteine, is largely disordered and comprises an acidic N-terminal region, a lysine/glutamic acid/proline-rich 40 aa sequence and BCNT-C. It shows complex mobility on SDS/PAGE at ∼50 kDa, whereas its calculated molecular mass is ∼33 kDa. To characterize this mobility discrepancy and the effects of post-translational modifications (PTMs), we expressed various deleted His–Bcnt in E. coli and HEK cells and found that an acidic stretch in the N-terminal region is a main cause of the gel shift. Exogenous BCNT/CFDP1 constitutively expressed in HEK clones appears as a doublet at 49 and 47 kDa, slower than the protein expressed in Escherichia coli but faster than the endogenous protein on SDS/PAGE. Among seven in vivo phosphorylation sites, Ser250, which resides in a region between disordered and ordered regions in BCNT-C, is heavily phosphorylated and detected predominantly in the 49 kDa band. Together with experiments involving treatment with phosphatases and Ser250 substitutions, the results indicate that the complex behaviour of Bcnt/Cfdp1 on SDS/PAGE is caused mainly by an acidic stretch in the N-terminal region and Ser250 phosphorylation in BCNT-C. Furthermore, Bcnt/Cfdp1 is acetylated in vitro by CREB-binding protein (CBP) and four lysine residues including Lys268 in BCNT-C are also acetylated in vivo, revealing a protein regulated at multiple levels.
机译:BCNT(Bucentaur)超家族通过C端BCNT-C(Bcnt / Cfdp1的保守C端区域)的约80个氨基酸(aa)的非保守序列进行分类。酵母Swc5和果蝇Yeti同源物在染色质重塑组织中起着关键作用,而哺乳动物Bcnt / Cfdp1(颅面发育蛋白1)仍然知之甚少。缺少半胱氨酸的蛋白质在很大程度上是无序的,并且包含酸性N末端区域,赖氨酸/谷氨酸/富含脯氨酸的40aa序列和BCNT-C。它在约50 kDa的SDS / PAGE上显示出复杂的迁移率,而其计算的分子量为〜33 kDa。为了表征这种流动性差异和翻译后修饰(PTM)的影响,我们在大肠杆菌和HEK细胞中表达了多种缺失的His-Bcnt,发现N端区域的酸性延伸是凝胶的主要原因转移。在HEK克隆中组成性表达的外源BCNT / CFDP1在49和47kDa处以双峰形式出现,比大肠杆菌中表达的蛋白慢,但比SDS / PAGE上的内源蛋白快。在七个体内磷酸化位点中,位于BCNT-C中无序和有序区域之间的区域中的Ser 250 被严重磷酸化并主要在49kDa谱带中被检测到。结合涉及用磷酸酶和Ser 250 处理的实验,结果表明Bcnt / Cfdp1在SDS / PAGE上的复杂行为主要是由N端区域的酸性拉伸和Ser < BCNT-C中的sup> 250 磷酸化。此外,Bcnt / Cfdp1在体外被CREB结合蛋白(CBP)乙酰化,BCNT-C中的四个赖氨酸残基(包括Lys 268 )也在体内被乙酰化,从而揭示了一种在多个水平上受调节的蛋白。

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