The Collstrop Foundation, The Royal Danish Academy of Sciences and Letters, H.C. Andersens Boulevard 35, 1553 Copenhagen V, Denmark.
Insect Biochem Mol Biol. 2011 Aug;41(8):620-7. doi: 10.1016/j.ibmb.2011.03.015. Epub 2011 Apr 6.
Fifty years ago it was concluded that the highly elastic cuticular protein, resilin, is devoid of secondary structure and that the peptide chains are randomly coiled and easily and reversibly deformed. These properties indicate that resilin is an intrinsically disordered protein and suggest that also other cuticular proteins may contain disordered regions. Amino acid sequences are now available for cuticular proteins from many insect species, and several programs have been developed to predict the probability for a given protein to contain disordered regions. The present paper describes the results obtained when the predictors are applied to various types of cuticular proteins from several insects. The results suggest that most cuticular proteins contain shorter or longer disordered regions, and the possible functions for such regions are briefly discussed.
五十年前,人们得出结论,高度弹性的表皮蛋白——减震蛋白缺乏二级结构,其肽链呈随机卷曲状态,易于发生可逆形变。这些特性表明减震蛋白是一种无序蛋白,这意味着其他表皮蛋白也可能含有无序区域。现在已经获得了许多昆虫的表皮蛋白的氨基酸序列,并且已经开发了几种程序来预测给定蛋白质是否含有无序区域。本文描述了将这些预测器应用于几种昆虫的各种类型的表皮蛋白时得到的结果。结果表明,大多数表皮蛋白都含有较短或较长的无序区域,并简要讨论了这些区域的可能功能。