García-Maroto F, Carbonero P, García-Olmedo F
Catedra de Bioquímica y Biología Molecular, E.T.S. Ingenieros Agrónomos-UPM, Madrid.
Plant Mol Biol. 1991 Nov;17(5):1005-11. doi: 10.1007/BF00037140.
The wheat monomeric inhibitor WMAI-1 (syn. 0.28) produced in Escherichia coli using the pT7-7 expression vector has the correct N-terminal sequence and the same electrophoretic mobility and specific activity towards the alpha-amylase from the insect Tenebrio molitor as the native WMAI-1 isolated from wheat. This confirms that the native inhibitor is not glycosylated and contradicts claims that a putative glycosyl moiety was essential for inhibition. Thirteen mutants have been obtained at six different sites. Substitution of the highly conserved N-terminal S by the sequence ARIRAR increased the pre-incubation time required for maximum activity. A similar result was obtained by insertion of GPRLPW after position 4, while insertion of EPRAPW at the same position rendered the inhibitor inactive. The substitution D/EGPRL and insertions DGP or D, at position 58, produced complete inactivation. All other mutations had only minor effects on activity.
利用pT7-7表达载体在大肠杆菌中产生的小麦单体抑制剂WMAI-1(同义词0.28)具有正确的N端序列,并且与从小麦中分离出的天然WMAI-1相比,对黄粉虫α-淀粉酶具有相同的电泳迁移率和比活性。这证实天然抑制剂没有糖基化,并且与关于假定的糖基部分对抑制作用至关重要的说法相矛盾。已在六个不同位点获得了13个突变体。用序列ARIRAR取代高度保守的N端S增加了达到最大活性所需的预孵育时间。在第4位之后插入GPRLPW也得到了类似的结果,而在相同位置插入EPRAPW使抑制剂失活。在第58位的取代D/EGPRL以及插入DGP或D导致完全失活。所有其他突变对活性只有轻微影响。