Agrwal N, Sun Q, Wang S Y, Wang J L
Department of Biochemistry, Michigan State University, East Lansing 48824.
J Biol Chem. 1993 Jul 15;268(20):14932-9.
The cDNA clone for carbohydrate-binding protein 35 (CBP35) was engineered into the bacterial expression vector pIN III ompA2, which directs the secretion of the expressed protein into the periplasmic space. Recombinant CBP35 was purified from this system, at a level of approximately 50 mg/liter of bacterial culture. Digestion of recombinant CBP35 with collagenase D, followed by purification using saccharide-specific affinity chromatography yielded a M(r) approximately 16,000 polypeptide, corresponding to the COOH-terminal domain (residues 118-264) of the CBP35 polypeptide. This indicates that the COOH-terminal half of CBP35 contains the carbohydrate recognition domain, consistent with its sequence homology to other S-type lectins. The NH2-terminal domain (residues 1-137) was derived by site-directed mutagenesis of the cDNA, in which stop codons are inserted in place of Gly138 and Gly139, and expression of the mutant cDNA in the same pIN III ompA2 system. The purified NH2-terminal domain failed to bind to saccharide-specific affinity resins. Differential scanning calorimetry of rCBP35 and its individual domains yielded transition temperatures of approximately 39 and approximately 56 degrees C for the NH2- and COOH-terminal domains, respectively. Lactose binding by the COOH-terminal domain shifted the transition temperature to 65 degrees C, whereas sucrose failed to yield the same effect. These results suggest that the individual domains of the CBP35 polypeptide are folded independently.
将碳水化合物结合蛋白35(CBP35)的cDNA克隆构建到细菌表达载体pIN III ompA2中,该载体可将表达的蛋白质分泌到周质空间。从该系统中纯化重组CBP35,产量约为每升细菌培养物50毫克。用胶原酶D消化重组CBP35,然后使用糖类特异性亲和色谱法进行纯化,得到一种分子量约为16000的多肽,对应于CBP35多肽的COOH末端结构域(第118 - 264位氨基酸残基)。这表明CBP35的COOH末端一半包含碳水化合物识别结构域,与其与其他S型凝集素的序列同源性一致。NH2末端结构域(第1 - 137位氨基酸残基)通过对cDNA进行定点诱变获得,其中在Gly138和Gly139的位置插入终止密码子,并在相同的pIN III ompA2系统中表达突变的cDNA。纯化的NH2末端结构域不能与糖类特异性亲和树脂结合。对rCBP35及其各个结构域进行差示扫描量热法分析,结果表明NH2末端和COOH末端结构域的转变温度分别约为39℃和56℃。COOH末端结构域与乳糖结合后,转变温度变为65℃,而蔗糖则没有产生相同的效果。这些结果表明CBP35多肽的各个结构域是独立折叠的。