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基于肽的蛋白质与丝裂原活化蛋白激酶对接凹槽结合的抑制剂

Peptide Based Inhibitors of Protein Binding to the Mitogen-Activated Protein Kinase Docking Groove.

作者信息

Alexa Anita, Ember Orsolya, Szabó Ildikó, Mo'ath Yousef, Póti Ádám L, Reményi Attila, Bánóczi Zoltán

机构信息

Biomolecular Interactions Laboratory, Institute of Organic Chemistry, Research Centre for Natural Sciences, Budapest, Hungary.

Department of Organic Chemistry, Institute of Chemistry, Eötvös Loránd University, Budapest, Hungary.

出版信息

Front Mol Biosci. 2021 Jul 1;8:690429. doi: 10.3389/fmolb.2021.690429. eCollection 2021.

Abstract

Mitogen-activated protein kinases (MAPK) are important regulatory units in cells and they take part in the regulation of many cellular functions such as cell division, differentiation or apoptosis. All MAPKs have a shallow docking groove that interacts with linear binding motifs of their substrate proteins and their regulatory proteins such as kinases, phosphatases, scaffolds. Inhibition of these protein-protein interactions may reduce or abolish the activity of the targeted kinase. Based on the wide range of their biological activity, this kind of inhibition can be useful in the treatment of many disorders like tumors, inflammation or undesired cell apoptosis. In this study a linear binding motif from the RHDF1 protein-a 15 amino acids long peptide-was selected for optimization to increase its cellular uptake but retaining its low micromolar binding affinity. First, we synthesized an octaarginine conjugate that showed efficient cellular uptake. Next, we set out to reduce the size of this construct. We were able to decrease the length of the original peptide, and to increase its cellular uptake with specific chemical modifications. These new constructs bound better to ERK2 and p38 kinases than the original peptide and they showed markedly increased cellular uptake. The new octaarginine conjugate and one of the minimized bicyclic derivatives could inhibit the phosphorylation of intracellular ERK or p38. However, the modulation of MAPK phosphorylation levels by these cell-penetrating peptides were complex, despite that in biochemical assays they all inhibited MAPK-substrate binding as well as phosphorylation. The optimized peptides depending on the applied concentration caused an expected decrease, but also some unexpected increase in MAPK phosphorylation patterns in the cell. This possibly reflects the complexity of MAPK docking groove mediated protein-protein interactions including bone fide MAPK clients such activator kinases, deactivating phosphatases or regulatory scaffolds. Thus, our findings with optimized cell-penetrating "inhibitory" peptides highlight the opportunities but also the pitfalls of docking peptide based MAPK activity regulation and call for a better quantitative understanding of MAPK mediated protein-protein interactions in cells.

摘要

丝裂原活化蛋白激酶(MAPK)是细胞中的重要调节单元,参与细胞分裂、分化或凋亡等多种细胞功能的调节。所有的MAPK都有一个浅的对接凹槽,可与底物蛋白以及调节蛋白(如激酶、磷酸酶、支架蛋白)的线性结合基序相互作用。抑制这些蛋白质 - 蛋白质相互作用可能会降低或消除靶向激酶的活性。基于其广泛的生物活性,这种抑制作用在治疗许多疾病(如肿瘤、炎症或不必要的细胞凋亡)中可能是有用的。在本研究中,选择了来自RHDF1蛋白的线性结合基序(一个15个氨基酸长的肽)进行优化,以增加其细胞摄取量,同时保留其低微摩尔结合亲和力。首先,我们合成了一种显示出高效细胞摄取的八聚精氨酸缀合物。接下来,我们着手减小该构建体的大小。我们能够缩短原始肽的长度,并通过特定的化学修饰增加其细胞摄取量。这些新构建体与ERK2和p38激酶的结合比原始肽更好,并且它们显示出明显增加的细胞摄取量。新的八聚精氨酸缀合物和一种最小化的双环衍生物之一可以抑制细胞内ERK或p38的磷酸化。然而,尽管在生化测定中这些细胞穿透肽都抑制了MAPK - 底物结合以及磷酸化,但它们对MAPK磷酸化水平的调节是复杂的。根据所应用的浓度,优化后的肽会导致细胞中MAPK磷酸化模式出现预期的降低,但也会出现一些意外的增加。这可能反映了MAPK对接凹槽介导的蛋白质 - 蛋白质相互作用的复杂性,包括真正的MAPK客户,如激活激酶、失活磷酸酶或调节支架蛋白。因此,我们对优化后的细胞穿透“抑制性”肽的研究结果突出了基于对接肽的MAPK活性调节的机会和陷阱,并呼吁对细胞中MAPK介导的蛋白质 - 蛋白质相互作用有更好的定量理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bdd/8281026/66bc8f0c5746/fmolb-08-690429-g001.jpg

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