Prodanovic Radivoje, Ostafe Raluca, Scacioc Andreea, Schwaneberg Ulrich
RWTH Aachen University, Lehrstuhl für Biotechnologie, Worringer Weg 1, 52056 Aachen, Germany.
Comb Chem High Throughput Screen. 2011 Jan;14(1):55-60. doi: 10.2174/1386207311107010055.
A compartmentalized tyramide labeling system (CoaTi) employing flow cytometry for sorting of yeast cells was developed as ultrahigh-throughput screening for Glucose oxidase (GOx) from Aspergillus niger. CoaTi combines in vitro compartmentalization technology with the CARD reporter system which uses fluorescein tyramide labels for detection of peroxidase activity. Physical connection between cells and fluorescein tyramide radicals was achieved by compartmentalization of yeast cells inside microdroplets of single water-in-oil emulsions. After reaction cells were recovered from single emulsions and sorted by flow cytometry, an error prone PCR mutant library of Glucose oxidase (GOx) containing 10(7) cells and ~10(5) of different GOx variants was screened. Mutagenic conditions of GOx mutant library were selected to generate <1 % of active GOx population in order to explore influence of high mutation frequency on GOx activity. GOx variant Mut12 that contains 5 mutations (N2Y, K13E, T30V, I94V, K152R) showed a 1.2 times decreased K(m) (22.0 vs 18.1 mM) and a 2.7 fold increased k(cat) (150 s(-1) vs 54.8 s(-1)) compared to wt GOx. Compared to the employed parent B11 GOx (16 mM, 80 s(-1)) it has a slightly increased K(m) and 1.8 times increased k(cat).
开发了一种采用流式细胞术对酵母细胞进行分选的分区酪胺标记系统(CoaTi),用于对黑曲霉葡萄糖氧化酶(GOx)进行超高通量筛选。CoaTi将体外分区技术与CARD报告系统相结合,该系统使用荧光素酪胺标签检测过氧化物酶活性。通过将酵母细胞分隔在单水包油乳液的微滴内,实现了细胞与荧光素酪胺自由基之间的物理连接。反应后,从单乳液中回收细胞并通过流式细胞术进行分选,对包含10⁷个细胞和约10⁵个不同GOx变体的葡萄糖氧化酶(GOx)易错PCR突变文库进行筛选。选择GOx突变文库的诱变条件以产生<1%的活性GOx群体,以探索高突变频率对GOx活性的影响。与野生型GOx相比,包含5个突变(N2Y、K13E、T30V、I94V、K152R)的GOx变体Mut12的Kₘ降低了1.2倍(22.0对18.1 mM),kₑₜ增加了2.7倍(150 s⁻¹对54.8 s⁻¹)。与所使用的亲本B11 GOx(16 mM,80 s⁻¹)相比,它的Kₘ略有增加,kₑₜ增加了1.8倍。