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成孔性大肠杆菌素A及其C末端片段的二级结构。实验事实与结构预测。

Secondary structure of the pore-forming colicin A and its C-terminal fragment. Experimental fact and structure prediction.

作者信息

Pattus F, Heitz F, Martinez C, Provencher S W, Lazdunski C

出版信息

Eur J Biochem. 1985 Nov 4;152(3):681-9. doi: 10.1111/j.1432-1033.1985.tb09248.x.

Abstract

Conformational investigations, using circular dichroism, on the pore-forming protein, colicin A (Mr 60 000), and a C-terminal bromelain fragment (Mr 20 000) were undertaken to estimate their secondary structure and to search for pH-dependent conformational changes. Colicin A and the bromelain peptide are mainly alpha-helical with an enrichment of the alpha-helical content in the C-terminal domain carrying the ionophoric activity. The non-negligible beta-sheet structure in the C-terminal domain is unstable and is easily transformed into alpha-helix upon decreasing the polarity of the solvent. No evidence of pH-dependent conformational modification, correlated with modification of colicin A activity, could be obtained. The secondary structure estimated on the basis of experimental data favoured a model in which the pore is built of a minimal number of six transmembrane alpha-helical segments. Search for such segments in the amino acid sequence of the C-terminal domain of colicin A was carried out by combining secondary structure prediction methods with hydrophobicity and hydrophobic movement calculations. Similar calculations on the C-terminal domains of colicin E1 and IB indicate a common structure of the pores formed by colicin A, E1 and IB. Only two or three putative transmembrane segments could be selected in the sequences of colicin A, IB or E1. As a result, it is concluded that the channel is probably not built by a single colicin molecule but more likely by an oligomer.

摘要

利用圆二色性对成孔蛋白大肠杆菌素A(分子量60000)和C端菠萝蛋白酶片段(分子量20000)进行了构象研究,以估计它们的二级结构,并寻找pH依赖性构象变化。大肠杆菌素A和菠萝蛋白酶肽主要是α-螺旋结构,在具有离子载体活性的C端结构域中α-螺旋含量增加。C端结构域中不可忽略的β-折叠结构不稳定,在降低溶剂极性时容易转变为α-螺旋。未获得与大肠杆菌素A活性改变相关的pH依赖性构象修饰的证据。根据实验数据估计的二级结构支持一种模型,即孔由最少六个跨膜α-螺旋段构成。通过将二级结构预测方法与疏水性和疏水运动计算相结合,在大肠杆菌素A的C端结构域氨基酸序列中搜索此类片段。对大肠杆菌素E1和IB的C端结构域进行的类似计算表明,大肠杆菌素A、E1和IB形成的孔具有共同结构。在大肠杆菌素A、IB或E1的序列中只能选择两到三个推定的跨膜段。因此,得出结论,通道可能不是由单个大肠杆菌素分子构成,而更可能是由寡聚体构成。

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