首页> 外文期刊>Biochemistry >The W232R Suppressor Mutation Promotes Maturation of a Truncation Mutant Lacking both NucleotDEe-Binding Domains and Restores Interdomain Assembly and Activity of P-glycoprotein Processing Mutants
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The W232R Suppressor Mutation Promotes Maturation of a Truncation Mutant Lacking both NucleotDEe-Binding Domains and Restores Interdomain Assembly and Activity of P-glycoprotein Processing Mutants

机译:W232R抑制突变促进缺乏核对结合结构域的截短突变体的成熟,并恢复互联组件和P-糖蛋白加工突变体的活性

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摘要

ATP-binding cassette (ABC) proteins contain two nucleotDEe-binding domains (NBDs) and two transmembrane (TM) domains (TMDs). Interdomain interactions and packing of the TM segments are critical for function, and disruption by genetic mutations contributes to disease. P-glycoprotein (P-gp) is a useful model to DEentify mechanisms that repair processing defects because numerous arginine suppressor mutations have been DEentified in the TM segments. Here, we tested the prediction that a mechanism of arginine rescue was to promote intradomain interactions between TM segments and restore interdomain assembly. We found that suppressor W232R(TM4/TMD1) rescued mutants with processing mutations in any domain and restored defective NBD1-NBD2, NBD1-TMD2, and TMD1-TMD2 interactions. W232R also promoted packing of the TM segments because it rescued a truncation mutant lacking both NBDs. The mechanism of W232R rescue likely involved intradomain hydrogen bond interactions with Asn296(TM5) since only N296A abolished rescue by W232R and rescue was only observed when Trp232 was replaced with hydrogen-bonding resDEues. In TMD2, suppressor T945R(TM11) also promoted packing of the TM segments because it rescued the truncation mutant lacking the NBDs and suppressed formation of alternative topologies. We propose that T945R rescue was mediated by interactions with Glu875(TM 10) since T945E/E875R promoted maturation while T945R/E875A dDE not.
机译:ATP结合盒(ABC)蛋白质含有两个核对结合结构域(NBD)和两个跨膜(TM)结构域(TM)。 TM段的互补相互作用和包装对于功能至关重要,并且基因突变的破坏有助于疾病。 p-糖蛋白(P-GP)是一种有用的模型,以追求修复加工缺陷的机制,因为在TM区段中已经脱潜到了许多精氨酸抑制突变。在这里,我们测试了精氨酸救援机制的预测,以促进TM段和恢复互联组件之间的腹内相互作用。我们发现抑制剂W232R(TM4 / TMD1)拯救了任何结构域的加工突变的突变体,并恢复有缺陷的NBD1-NBD2,NBD1-TMD2和TMD1-TMD2相互作用。 W232R还促进了TM段的包装,因为它救出了缺乏两个人NBD的截断突变体。 W232R救援的机制可能涉及与ASN296(TM5)的颅内氢键相互作用,因为当用W232R通过W232R消除N296A废除并恢复时,当TRP232用氢键键合的氢粘合剂替换时,仅观察到。在TMD2中,抑制器T945R(TM11)还促进了TM段的包装,因为它救出缺乏NBD的截短突变体并抑制了替代拓扑的形成。我们提出,由于T945E / E875R促进成熟,而T945R / E875A DDE的相互作用,我们提出了通过与Glu875(TM 10)的相互作用介导的T945R救援。

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