Dang T, Prestwich G D
Department of Medicinal Chemistry, The University of Utah, Salt Lake City 84112-5820, USA.
Chem Biol. 2000 Aug;7(8):643-9. doi: 10.1016/s1074-5521(00)00003-x.
Two regions of squalene-hopene cyclase (SHC) were examined to define roles for motifs posited to be responsible for initiation and termination of the enzyme-catalyzed polyolefinic cyclizations. Specifically, we first examined the triple mutant of the DDTAVV motif, a region deeply buried in the catalytic cavity and thought to be responsible for the initiation of squalene cyclization. Next, four mutants were prepared for Glu45, a residue close to the substrate entrance channel proposed to be involved in the termination of the cyclization of squalene.
The DDTAVV motif in SHC was changed to DCTAEA, the corresponding conserved region of eukaryotic oxidosqualene cyclase (OSC), by the triple mutation of D377C/V380E/V381A; selected single mutants were also examined. The triple mutant showed no detectable cyclization of squalene, but effectively cyclized 2,3-oxidosqualene to give mono- and pentacyclic triterpene products. Of the Glu45 mutants, E45A and E45D showed reduced activity, E45Q showed slightly increased activity, and E45K was inactive. A normal yield of pentacyclic products was produced, but the ratio of hopene 2 to hopanol 3 was significantly changed in the less active mutants.
Initiation and substrate selectivity may be determined by the interaction of the DDTAVV motif with the isopropylidene of squalene (for SHC) and of the DCTAEA motif with the epoxide of oxidosqualene (for OSC). This is the first report of a substrate switch determined by a central catalytic motif in a triterpenoid cyclase. At the termination of cyclization, the product ratio may be largely controlled by Glu45 at the entrance channel to the active site.
研究了鲨烯-hopene环化酶(SHC)的两个区域,以确定假定负责酶催化的聚烯烃环化起始和终止的基序的作用。具体而言,我们首先研究了DDTAVV基序的三重突变体,该区域深埋于催化腔中,被认为负责鲨烯环化的起始。接下来,制备了四个针对Glu45的突变体,Glu45是靠近底物进入通道的一个残基,被认为参与鲨烯环化的终止。
通过D377C/V380E/V381A的三重突变,将SHC中的DDTAVV基序变为真核氧化鲨烯环化酶(OSC)的相应保守区域DCTAEA;还研究了选定的单突变体。三重突变体未检测到鲨烯的环化,但能有效地将2,3-氧化鲨烯环化生成单环和五环三萜产物。在Glu45突变体中,E45A和E45D活性降低,E45Q活性略有增加,而E45K无活性。产生了正常产量的五环产物,但在活性较低的突变体中,hopene 2与hopanol 3的比例发生了显著变化。
起始和底物选择性可能由DDTAVV基序与鲨烯的异亚丙基(对于SHC)以及DCTAEA基序与氧化鲨烯的环氧化物(对于OSC)之间的相互作用决定。这是关于三萜环化酶中由中央催化基序决定底物转换的首次报道。在环化终止时,产物比例可能在很大程度上由活性位点入口通道处的Glu45控制。