Blackman Michael J, Corrie John E T, Croney John C, Kelly Geoff, Eccleston John F, Jameson David M
National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, U.K.
Biochemistry. 2002 Oct 8;41(40):12244-52. doi: 10.1021/bi0263661.
Activation of the proenzyme form of the malarial protease PfSUB-1 involves the autocatalytic cleavage of an Asp-Asn bond within the internal sequence motif (215)LVSADNIDIS(224). A synthetic decapeptide based on this sequence but with the N- and C-terminal residues replaced by cysteines (Ac-CVSADNIDIC-OH) was labeled with 5- or 6-isomers of iodoacetamidotetramethylrhodamine (IATR). The doubly labeled peptides have low fluorescence because of ground-state, noncovalent dimerization of the rhodamines. Cleavage of either peptide by recombinant PfSUB-1 results in dissociation of the rhodamine dimers, which abolishes the self-quenching and consequently leads to an approximately 30-fold increase in the fluorescence. This spectroscopic signal provides a continuous assay of proteolysis, enabling quantitative kinetic measurements to be made, and has also enabled the development of a fluorescence-based assay suitable for use in high-throughput screens for inhibitors of PfSUB-1. The structure of the rhodamine dimer in the 6-IATR-labeled peptide was shown by NMR to be a face-to-face stacking of the xanthene rings. Time-resolved fluorescence measurements suggest that the doubly labeled peptides exist in an equilibrium consisting of rhodamines involved in dimers (closed forms) and rhodamines not involved in dimers (open forms). These data also indicate that the rhodamine dimers fluoresce and that the associated lifetimes are subnanosecond.
疟原虫蛋白酶PfSUB-1的酶原形式的激活涉及内部序列基序(215)LVSADNIDIS(224)中Asp-Asn键的自催化切割。基于该序列的合成十肽,但N端和C端残基被半胱氨酸取代(Ac-CVSADNIDIC-OH),用碘乙酰胺基四甲基罗丹明(IATR)的5-或6-异构体进行标记。由于罗丹明的基态非共价二聚化,双重标记的肽具有低荧光。重组PfSUB-1对任何一种肽的切割都会导致罗丹明二聚体的解离,这消除了自猝灭,从而导致荧光增加约30倍。这种光谱信号提供了一种连续的蛋白水解测定方法,能够进行定量动力学测量,并且还促成了一种基于荧光的测定方法的开发,该方法适用于高通量筛选PfSUB-1抑制剂。通过核磁共振显示,6-IATR标记的肽中罗丹明二聚体的结构是呫吨环的面对面堆积。时间分辨荧光测量表明,双重标记的肽以一种平衡状态存在,该平衡由参与二聚体的罗丹明(封闭形式)和不参与二聚体的罗丹明(开放形式)组成。这些数据还表明,罗丹明二聚体发出荧光,并且相关的寿命为亚纳秒级。