Edo K, Saito K, Akiyama-Murai Y, Mizugaki M, Koide Y, Ishida N
Department of Pharmaceutical Sciences, Tohoku University Hospital, Sendai, Japan.
J Antibiot (Tokyo). 1988 Apr;41(4):554-62. doi: 10.7164/antibiotics.41.554.
The mode of neocarzinostatin-chromophore (NCS-chr)-apo-neocarzinostatin (apo-NCS) interaction in neocarzinostatin (NCS) complex has been described. The NCS-chr release from the NCS complex in the presence of various reagents, which destroy the high-order structure of the protein under various pH conditions, was examined. We found that (i) sodium dodecylsulfate, Nonidet P 40, 8 M urea, and 2-propanol did release NCS-chr from NCS, (ii) no NCS-chr release is detected below pH 7, but it is enhanced at high pH and (iii) beta-naphthol as a model of naphthalenecarboxylic acid derivative and D-galactosamine as a model of N-methylfucosamine of NCS-chr did release NCS-chr from NCS. These observations indicate that the binding of NCS-chr to apo-NCS may be due to not only ionic interaction between the acidic side chain of apo-NCS and the basic center of an aminosugar moiety of NCS-chr but also hydrophobic interaction between the hydrophobic amino acids of apo-NCS and hydrophobic moieties of NCS-chr. Apo-NCS is a very hydrophilic protein, since it has an high hydrophilic amino acid content. So, local hydrophobicity, local hydrophilicity and secondary structure of apo-NCS were predicted. Hydrophobic residues of apo-NCS predominantly located in beta-sheet structures near the carboxyl-terminus. These predictions are in good agreement with the results suggesting that NCS-chr bound carboxyl-terminal-43-peptide of apo-NCS in our previous result.
已描述了新制癌菌素(NCS)复合物中新制癌菌素发色团(NCS-chr)与脱辅基新制癌菌素(apo-NCS)的相互作用模式。研究了在各种试剂存在下,NCS复合物中NCS-chr的释放情况,这些试剂在不同pH条件下会破坏蛋白质的高级结构。我们发现:(i)十二烷基硫酸钠、Nonidet P 40、8M尿素和2-丙醇确实能使NCS-chr从NCS中释放出来;(ii)在pH 7以下未检测到NCS-chr释放,但在高pH时释放增强;(iii)作为萘羧酸衍生物模型的β-萘酚和作为NCS-chr的N-甲基岩藻糖胺模型的D-半乳糖胺确实能使NCS-chr从NCS中释放出来。这些观察结果表明,NCS-chr与apo-NCS的结合可能不仅归因于apo-NCS酸性侧链与NCS-chr氨基糖部分碱性中心之间的离子相互作用,还归因于apo-NCS疏水氨基酸与NCS-chr疏水部分之间的疏水相互作用。Apo-NCS是一种非常亲水的蛋白质,因为它具有高含量的亲水氨基酸。因此,预测了apo-NCS的局部疏水性、局部亲水性和二级结构。Apo-NCS的疏水残基主要位于羧基末端附近的β-折叠结构中。这些预测与我们之前结果中表明NCS-chr结合apo-NCS羧基末端-43-肽的结果非常一致。