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Mutational probing of protein aggregates to design aggregation‐resistant proteins

机译:蛋白质聚集体的突变探测以设计抗聚集蛋白

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Characterization of amorphous protein aggregates may offer insights into the process of aggregation. Eleven single amino acid mutants of lipase (LipA of Bacillus subtilis ) were subjected to temperature‐induced aggregation, and the resultant aggregates were characterized for recovery of activity in the presence of guanidinium chloride (GdmCl). Based on activity recovery profiles of the aggregates, the mutants could be broadly assigned into four groups. By including at least one mutation from each group, a mutant was generated that showed an increase of ~ 10 °C in melting temperature ( T m) compared to the wild‐type and did not aggregate even at 75 °C. This method explores characterization of amorphous protein aggregates in the presence of GdmCl and helps in identifying mutations involved in protein aggregation.
机译:无定形蛋白质聚集体的表征可以提供对聚集过程的见解。对11个脂肪酶的单个氨基酸突变体(枯草芽孢杆菌的LipA)进行温度诱导的聚集,并表征所得聚集体在氯化胍(GdmCl)存在下的活性恢复。根据聚集体的活性恢复概况,可将突变体大致分为四类。通过在每组中至少包含一个突变,产生了一个突变体,与野生型相比,其融解温度(T m )升高了约10°C,甚至在75 ℃。该方法探索了在GdmCl存在下无定形蛋白质聚集体的表征,并有助于鉴定参与蛋白质聚集的突变。

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