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Expression and purification of the first nucleotide-binding domain and linker region of human multidrug resistance gene product: comparison of fusions to glutathione S-transferase, thioredoxin and maltose-binding protein

机译:人多药抗性基因产物的第一个核苷酸结合结构域和接头区的表达和纯化:与谷胱甘肽S-转移酶,硫氧还蛋白和麦芽糖结合蛋白的融合体比较

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pMany membrane proteins that belong to the ATP-binding cassette (ABC) superfamily are clinically important, including the cystic fibrosis transmembrane conductance regulator, the sulphonylurea receptor and P-glycoprotein (multidrug resistance gene product; MDR1). These proteins contain two multispanning transmembrane domains, each followed by one nucleotide-binding domain (NBD) and a linker region distal to the first NBD. ATP hydrolysis by the NBDs is critical for ABC protein function; the linker region seems to have a regulatory role. Previous attempts to express soluble NBDs and/or linker regions without detergent solubilization, or to purify NBDs at high yields as soluble fusion proteins, have been unsuccessful. Here we present a system for the expression in iEscherichia coli/i of the first NBD of MDR1 followed by its linker region (NBD1MLD). A comparison of the expressions of NBD1MLD fused to glutathione S-transferase, thioredoxin and maltose-binding protein (MBP) shows that a high level of expression in the soluble fraction (approx. 8% of total iE. coli/i protein) can be achieved only for MBP–NBD1MLD. The addition of a proteolytic thrombin site just proximal to the N-terminal end of NBD1MLD allows the cleavage of NBD1MLD from MBP, which can be easily purified with retention of its ATPase activity. In summary, success was obtained only when using an MBP fusion protein vector containing a thrombin proteolytic site between MBP and NBD1MLD. The approach described here could be generally applicable to solving the problems of expression and purification of NBDs/linker regions of ABC proteins./p
机译:>许多属于ATP结合盒(ABC)超家族的膜蛋白在临床上都很重要,包括囊性纤维化跨膜电导调节剂,磺酰脲受体和P-糖蛋白(多药抗性基因产物; MDR1)。这些蛋白质包含两个多跨跨膜结构域,每个结构域后接一个核苷酸结合结构域(NBD)和一个位于第一个NBD远端的接头区域。 NBD的ATP水解对于ABC蛋白质功能至关重要。接头区域似乎具有调节作用。在没有去污剂溶解的情况下表达可溶性NBD和/或接头区域,或以高产率纯化NBD作为可溶性融合蛋白的先前尝试均未成功。在这里,我们介绍了一种在MDR1的第一个NBD及其后的接头区域(NBD1MLD)中在大肠杆菌中表达的系统。比较与谷胱甘肽S-转移酶,硫氧还蛋白和麦芽糖结合蛋白(MBP)融合的NBD1MLD的表达,发现可溶性部分的表达水平很高(约占大肠杆菌总数的8%) >蛋白)只能用于MBP–NBD1MLD。在NBD1MLD N末端的近端添加一个蛋白水解凝血酶位点,可以从MBP切割NBD1MLD,而保留其ATPase活性则可以很容易地对其进行纯化。总之,仅当使用MBP和NBD1MLD之间包含凝血酶蛋白水解位点的MBP融合蛋白载体时,才能获得成功。本文描述的方法可普遍用于解决ABC蛋白NBD /接头区域的表达和纯化问题。

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