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果蝇中 CP190 与结构蛋白相互作用的机制。

Mechanisms of CP190 Interaction with Architectural Proteins in Drosophila Melanogaster.

机构信息

Department of the Control of Genetic Processes, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., 119334 Moscow, Russia.

Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Institute of Gene Biology, Russian Academy of Sciences, 34/5 Vavilov St., 119334 Moscow, Russia.

出版信息

Int J Mol Sci. 2021 Nov 17;22(22):12400. doi: 10.3390/ijms222212400.

Abstract

Most of the known Drosophila architectural proteins interact with an important cofactor, CP190, that contains three domains (BTB, M, and D) that are involved in protein-protein interactions. The highly conserved N-terminal CP190 BTB domain forms a stable homodimer that interacts with unstructured regions in the three best-characterized architectural proteins: dCTCF, Su(Hw), and Pita. Here, we identified two new CP190 partners, CG4730 and CG31365, that interact with the BTB domain. The CP190 BTB resembles the previously characterized human BCL6 BTB domain, which uses its hydrophobic groove to specifically associate with unstructured regions of several transcriptional repressors. Using GST pull-down and yeast two-hybrid assays, we demonstrated that mutations in the hydrophobic groove strongly affect the affinity of CP190 BTB for the architectural proteins. In the yeast two-hybrid assay, we found that architectural proteins use various mechanisms to improve the efficiency of interaction with CP190. Pita and Su(Hw) have two unstructured regions that appear to simultaneously interact with hydrophobic grooves in the BTB dimer. In dCTCF and CG31365, two adjacent regions interact simultaneously with the hydrophobic groove of the BTB and the M domain of CP190. Finally, CG4730 interacts with the BTB, M, and D domains of CP190 simultaneously. These results suggest that architectural proteins use different mechanisms to increase the efficiency of interaction with CP190.

摘要

大多数已知的果蝇结构蛋白与一个重要的辅因子 CP190 相互作用,CP190 包含三个参与蛋白-蛋白相互作用的结构域(BTB、M 和 D)。高度保守的 CP190 N 端 BTB 结构域形成稳定的同源二聚体,与三个最具特征的结构蛋白:dCTCF、Su(Hw)和 Pita 的无规则结构区域相互作用。在这里,我们鉴定了两个新的 CP190 伴侣蛋白 CG4730 和 CG31365,它们与 BTB 结构域相互作用。CP190 BTB 类似于先前鉴定的人 BCL6 BTB 结构域,它利用其疏水性凹槽特异性地与几个转录抑制因子的无规则结构区域结合。使用 GST 下拉和酵母双杂交测定,我们证明疏水性凹槽中的突变强烈影响 CP190 BTB 与结构蛋白的亲和力。在酵母双杂交测定中,我们发现结构蛋白使用各种机制来提高与 CP190 的相互作用效率。Pita 和 Su(Hw) 有两个无规则结构区域,似乎同时与 BTB 二聚体的疏水性凹槽相互作用。在 dCTCF 和 CG31365 中,两个相邻的区域同时与 BTB 的疏水性凹槽和 CP190 的 M 结构域相互作用。最后,CG4730 与 CP190 的 BTB、M 和 D 结构域同时相互作用。这些结果表明,结构蛋白使用不同的机制来提高与 CP190 的相互作用效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e31/8618245/a722aca6d6f2/ijms-22-12400-g001.jpg

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