Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road East, Guelph, Ontario N1G 2W1, Canada.
Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road East, Guelph, Ontario N1G 2W1, Canada.
Biochem Biophys Res Commun. 2014 May 16;447(4):633-7. doi: 10.1016/j.bbrc.2014.04.050. Epub 2014 Apr 18.
The gene in the oligodendrocyte lineage (golli) encodes a number of proteins essential for myelination, comprising Golli and classic isoforms that are expressed in a developmentally-regulated manner. The Golli-interacting-protein (GIP) was previously discovered in a search for potential interacting partners of the Golli-isoform BG21, and was realised to be an acidic phosphatase belonging to the family of RNA-polymerase-2, small-subunit, C-terminal phosphatases (viz., SCP1). Here, we refer to this protein as mSCP1/GIP. In subsequent in vitro studies of recombinant murine SCP1/GIP, the inability to produce an active full-length version of the protein under native conditions necessitated the study of a truncated form ΔN-rmSCP1/GIP, but with inconclusive results regarding its interaction with BG21 [13]. We have since developed a new SUMO-expression and purification protocol for the preparation of a functional, full-length mGIP/SCP1, with no additional purification tags. Here, the interaction between mSCP1/GIP (with intact N-terminus) and BG21 is shown to be different than for the truncation mutant studied previously. Specifically, this interaction shows a dual effect on the enzymatic activity of mSCP1/GIP by BG21: BG21 enhanced mSCP1/GIP phosphatase activity (Ka = 30 μM), whereas PKCα-phosphorylated BG21 inhibited its activity (Ki = 2.9 μM), suggesting a potential role of BG21 as a molecular switch ("quick-brake mechanism") on mSCP1/GIP. The successful production of an active, full-length mSCP1/GIP thus demonstrates a role for its N-terminus in regulation of phosphatase activity, in events such as the regulation of transcription in oligodendrocytes.
该基因在少突胶质细胞谱系(golli)中编码了许多对髓鞘形成至关重要的蛋白质,包括以发育调控方式表达的Golli 和经典同工型。Golli 相互作用蛋白(GIP)是在寻找 Golli-同工型 BG21 的潜在相互作用伙伴的过程中发现的,被认为是一种酸性磷酸酶,属于 RNA 聚合酶-2 小亚基 C 末端磷酸酶家族(即 SCP1)。在这里,我们将这种蛋白质称为 mSCP1/GIP。在随后对重组鼠 SCP1/GIP 的体外研究中,由于无法在天然条件下产生活性全长版本的蛋白质,因此需要研究一种截断形式的ΔN-rmSCP1/GIP,但关于其与 BG21 的相互作用的结果并不明确[13]。此后,我们开发了一种新的 SUMO 表达和纯化方案,用于制备功能性全长 mGIP/SCP1,没有额外的纯化标签。在这里,显示 mSCP1/GIP(具有完整的 N 末端)与 BG21 之间的相互作用与以前研究的截断突变体不同。具体而言,这种相互作用对 mSCP1/GIP 的酶活性表现出双重影响:BG21 增强了 mSCP1/GIP 磷酸酶活性(Ka = 30 μM),而 PKCα 磷酸化的 BG21 抑制了其活性(Ki = 2.9 μM),表明 BG21 作为分子开关(“快速制动机制”)在 mSCP1/GIP 上的潜在作用。成功产生活性全长 mSCP1/GIP 证明了其 N 末端在调节磷酸酶活性中的作用,例如在少突胶质细胞中转录的调节中。