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共价连接寡聚化缺陷的 GlpF 原体并不能完全重建野生型通道活性。

Covalently Linking Oligomerization-Impaired GlpF Protomers Does Not Completely Re-establish Wild-Type Channel Activity.

机构信息

Johannes Gutenberg-University Mainz, Institute of Pharmacy and Biochemistry, Johann-Joachim-Becher-Weg 30, 55128 Mainz, Germany.

出版信息

Int J Mol Sci. 2019 Feb 20;20(4):927. doi: 10.3390/ijms20040927.

Abstract

Integral membrane proteins of the aquaporin family facilitate rapid water flux across cellular membranes in all domains of life. Although the water-conducting pore is clearly defined in an aquaporin monomer, all aquaporins assemble into stable tetramers. In order to investigate the role of protomer⁻protomer interactions, we analyzed the activity of heterotetramers containing increasing fractions of mutated monomers, which have an impaired oligomerization propensity and activity. In order to enforce interaction between the protomers, we designed and analyzed a genetically fused homotetramer of GlpF, the aquaglyceroporin of the bacterium (). However, increasing fractions of the oligomerization-impaired mutant GlpF E43A affected the activity of the GlpF heterotetramer in a nearly linear manner, indicating that the reduced protein activity, caused by the introduced mutations, cannot be fully compensated by simply covalently linking the monomers. Taken together, the results underline the importance of exactly positioned monomer⁻monomer contacts in an assembled GlpF tetramer.

摘要

水通道蛋白家族的整合膜蛋白促进了所有生命领域的细胞快速跨膜水通量。尽管水通道蛋白单体中的水导孔是明确界定的,但所有水通道蛋白都组装成稳定的四聚体。为了研究原聚体-原聚体相互作用的作用,我们分析了含有越来越多突变单体的异四聚体的活性,这些单体的寡聚倾向和活性受损。为了加强原聚体之间的相互作用,我们设计并分析了()细菌的甘油质通道蛋白 GlpF 的基因融合同源四聚体。然而,具有受损寡聚倾向的突变 GlpF E43A 的比例增加,以近乎线性的方式影响 GlpF 异四聚体的活性,这表明引入突变导致的蛋白质活性降低,不能通过简单地共价连接单体来完全补偿。总之,这些结果强调了在组装的 GlpF 四聚体中,单体-单体接触的精确定位的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4aa0/6412381/13142aac03e9/ijms-20-00927-g001.jpg

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