Liu H L, Coutinho P M, Ford C, Reilly P J
Department of Chemical Engineering, Iowa State University, Ames 50011, USA.
Protein Eng. 1998 May;11(5):389-98. doi: 10.1093/protein/11.5.389.
Mutations Asn20-->Cys/Ala27-->Cys (SS), Ala27-->Pro, Ser30-->Pro, Lys108-->Arg, Gly137-->Ala, Tyr312-->Trp and Ser436-->Pro in Aspergillus awamori glucoamylase, along with a mutation inserting a seven-residue loop between Tyr311 and Gly314 (311-314 Loop), were made to increase glucose yield from maltodextrin hydrolysis. No active Lys108-->Met glucoamylase was found in the supernatant after being expressed from yeast. Lys108-->Arg, 311-314 Loop and Tyr312-->Trp glucoamylases have lower activities than wild-type glucoamylase; other GAs have the same or higher activities. SS and 311-314 Loop glucoamylases give one-quarter to two-thirds the relative rates of isomaltose formation from glucose compared with glucose formation from maltodextrins at 35, 45 and 55 degrees C, correlating with up to 2% higher peak glucose yields from 30% (w/v) maltodextrin hydrolysis. Conversely, Lys108-->Arg glucoamylase has relative isomaltose formation rates three times higher and glucose yields up to 4% lower than wild-type glucoamylase. Gly137-->Ala and Tyr312-->Trp glucoamylases also give high glucose yields at higher temperatures. Mutated glucoamylases that catalyze high rates of isomaltose formation give higher glucose yields from shorter than from longer maltodextrins, opposite to normal experience with more efficient glucoamylases.
对泡盛曲霉糖化酶进行了Asn20→Cys/Ala27→Cys(SS)、Ala27→Pro、Ser30→Pro、Lys108→Arg、Gly137→Ala、Tyr312→Trp和Ser436→Pro等突变,同时进行了在Tyr311和Gly314之间插入一个七残基环的突变(311 - 314环),以提高麦芽糖糊精水解产生的葡萄糖产量。从酵母中表达后,在上清液中未发现有活性的Lys108→Met糖化酶。Lys108→Arg、311 - 314环和Tyr312→Trp糖化酶的活性低于野生型糖化酶;其他糖化酶具有相同或更高的活性。在35、45和55摄氏度下,SS和311 - 314环糖化酶从葡萄糖形成异麦芽糖的相对速率是从麦芽糖糊精形成葡萄糖相对速率的四分之一到三分之二,这与30%(w/v)麦芽糖糊精水解产生的峰值葡萄糖产量高出多达2%相关。相反,Lys108→Arg糖化酶的相对异麦芽糖形成速率比野生型糖化酶高三倍,葡萄糖产量低多达4%。Gly137→Ala和Tyr312→Trp糖化酶在较高温度下也能产生高葡萄糖产量。催化高异麦芽糖形成速率的突变糖化酶从较短麦芽糖糊精产生的葡萄糖产量高于从较长麦芽糖糊精产生的葡萄糖产量,这与更高效糖化酶的正常情况相反。