Liu Qiang, Knobloch Gunnar, Voorneveld Jim, Meeuwenoord Nico J, Overkleeft Herman S, van der Marel Gijsbert A, Ladurner Andreas G, Filippov Dmitri V
Leiden Institute of Chemistry, Leiden University P.O. Box 9502 2300 RA Leiden The Netherlands
Biomedical Center (BMC), Physiological Chemistry, Faculty of Medicine LMU Munich 82152 Planegg-Martinsried Germany
Chem Sci. 2021 Aug 18;12(37):12468-12475. doi: 10.1039/d1sc02340c. eCollection 2021 Sep 29.
ADP-ribosylation is a pivotal post-translational modification that mediates various important cellular processes producing negatively charged biopolymer, poly (ADP-ribose), the functions of which need further elucidation. Toward this end, the availability of well-defined ADP-ribose (ADPr) oligomers in sufficient quantities is a necessity. In this work, we demonstrate the chemical synthesis of linear ADPr oligomers of defined, increasing length using a modified solid phase synthesis method. An advanced phosphoramidite building block temporarily protected with the base sensitive Fm-group was designed and implemented in the repeating pyrophosphate formation a P(v)-P(iii) coupling procedure on Tentagel solid support. Linear ADPr oligomers up to a pentamer were successfully synthesized and their affinity for the poly-(ADP-ribose)-binding macrodomain of the human oncogenic helicase and chromatin remodeling enzyme ALC1 was determined. Our data reveal a length-dependent binding manner of the nucleic acid, with larger ADPr oligomers exhibiting higher binding enthalpies for ALC1, illustrating how the activity of this molecular machine is gated by PAR.
ADP核糖基化是一种关键的翻译后修饰,介导各种重要的细胞过程,产生带负电荷的生物聚合物聚(ADP-核糖),其功能尚需进一步阐明。为此,必须有足够数量的结构明确的ADP-核糖(ADPr)寡聚物。在这项工作中,我们展示了使用改良的固相合成方法化学合成长度确定且不断增加的线性ADPr寡聚物。设计了一种用对碱敏感的Fm基团暂时保护的先进亚磷酰胺构建块,并将其应用于在Tentagel固相载体上进行的重复焦磷酸形成(一种P(v)-P(iii)偶联程序)中。成功合成了直至五聚体的线性ADPr寡聚物,并测定了它们对人类致癌解旋酶和染色质重塑酶ALC1的聚(ADP-核糖)结合大结构域的亲和力。我们的数据揭示了核酸的长度依赖性结合方式,较大的ADPr寡聚物对ALC1表现出更高的结合焓,说明了这种分子机器的活性是如何由PAR控制的。