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聚(ADP-核糖)-琼脂糖珠的合成:一种用于研究(ADP-核糖)n-蛋白质相互作用的亲和树脂。

Synthesis of poly(ADP-ribose)-agarose beads: an affinity resin for studying (ADP-ribose)n-protein interactions.

作者信息

Panzeter P L, Zweifel B, Althaus F R

机构信息

University of Zürich, Institute of Pharmacology and Biochemistry, Switzerland.

出版信息

Anal Biochem. 1992 Nov 15;207(1):157-62. doi: 10.1016/0003-2697(92)90517-b.

Abstract

Polymers of ADP-ribose bind chromatosomal histones in solution and may play a role in chromatin accessibility in vivo. We have enzymatically synthesized a poly(ADP-ribose) affinity resin to further characterize binding of nuclear proteins to ADP-ribose polymers. NAD+- and (ADP-ribose)-derivatized agarose beads were recognized as polymer acceptors by the nuclear enzyme poly(ADP-ribose) polymerase. This polymerase elongated the existing ligands by successive addition of exogenously available ADP-ribose residues to form polymers covalently linked to the agarose beads. Poly(ADP-ribose) formation on the beads was dependent on incubation time and the mode of ligand attachment to the agarose. The resulting poly(ADP-ribose)-derivatized agarose beads possessed polymers which closely resembled those modifying the ADP-ribose polymerase by the automodification reaction. Fractionation of rat liver nuclear lysate over the poly(ADP-ribose) resin revealed a strong affinity of H1 for ADP-ribose polymers, thereby supporting a role for poly(ADP-ribose) in chromatin functions. Poly(ADP-ribose)-agarose beads are extremely stable and will be useful not only for affinity studies, but also for mechanistic studies involving polymer elongation and catabolism.

摘要

ADP - 核糖聚合物在溶液中与染色质组蛋白结合,并且可能在体内染色质可及性方面发挥作用。我们已经通过酶促合成了一种聚(ADP - 核糖)亲和树脂,以进一步表征核蛋白与ADP - 核糖聚合物的结合。NAD⁺和(ADP - 核糖)衍生的琼脂糖珠被核酶聚(ADP - 核糖)聚合酶识别为聚合物受体。这种聚合酶通过连续添加外源可用的ADP - 核糖残基来延长现有的配体,从而形成与琼脂糖珠共价连接的聚合物。珠子上聚(ADP - 核糖)的形成取决于孵育时间和配体与琼脂糖的连接方式。所得的聚(ADP - 核糖)衍生的琼脂糖珠所具有的聚合物与通过自身修饰反应修饰聚(ADP - 核糖)聚合酶的聚合物非常相似。用聚(ADP - 核糖)树脂对大鼠肝细胞核裂解物进行分级分离,揭示了H1对ADP - 核糖聚合物具有很强的亲和力,从而支持了聚(ADP - 核糖)在染色质功能中的作用。聚(ADP - 核糖) - 琼脂糖珠极其稳定,不仅将用于亲和研究,还将用于涉及聚合物延长和分解代谢的机制研究。

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