Feng B, Stemmer P M
Department of Pediatrics, College of Medicine, University of Nebraska Medical Center, Omaha 68198-6055, USA.
Biochemistry. 1999 Sep 21;38(38):12481-9. doi: 10.1021/bi990492w.
Calcineurin B (CN-B) is the Ca(2+)-binding, regulatory subunit of the phosphatase calcineurin. Point mutations to Ca(2+)-binding sites in CN-B were generated to disable individual Ca(2+)-binding sites and evaluate contributions from each site to calcineurin heterodimer formation. Ca(2+)-binding properties of four CN-B mutants and wild-type CN-B were analyzed by flow dialysis confirming that each CN-B mutant binds three Ca2+ and that wild-type CN-B binds four Ca2+. Macroscopic dissociation constants indicate that N-terminal Ca(2+)-binding sites have lower affinity for Ca2+ than the C-terminal sites. Each CN-B mutant was coexpressed with the catalytic subunit of calcineurin, CN-A, to produce heterodimers with specific disruption of one Ca(2+)-binding site. Enzymes containing CN-B with a mutation in Ca(2+)-binding sites 1 or 2 have a lower ratio of CN-B to CN-A and a lower phosphatase activity than those containing wild-type CN-B or mutants in sites 3 or 4. Effects of heterodimer formation on Ca2+ binding were assessed by monitoring (45)Ca2+ exchange by flow dialysis. Enzymes containing wild-type CN-B and mutants in sites 1 and 2 exchange (45)Ca2+ slowly from two sites whereas mutants in sites 3 and 4 exchange (45)Ca2+ slowly from a single site. These data indicate that the Ca2+ bound to sites 1 and 2 is likely to vary with Ca2+ concentration and may act in dynamic modulation of enzyme function, whereas Ca(2+)-binding sites 3 and 4 are saturated at all times and that Ca2+ bound to these sites is structural.
钙调神经磷酸酶B(CN-B)是磷酸酶钙调神经磷酸酶的钙结合调节亚基。对CN-B中钙结合位点进行点突变,以禁用单个钙结合位点,并评估每个位点对钙调神经磷酸酶异二聚体形成的贡献。通过流动透析分析了四种CN-B突变体和野生型CN-B的钙结合特性,证实每个CN-B突变体结合三个Ca2+,而野生型CN-B结合四个Ca2+。宏观解离常数表明,N端钙结合位点对Ca2+的亲和力低于C端位点。每个CN-B突变体与钙调神经磷酸酶的催化亚基CN-A共表达,以产生具有一个钙结合位点特异性破坏的异二聚体。与含有野生型CN-B或位点3或4中的突变体的酶相比,含有钙结合位点1或2发生突变的CN-B的酶具有较低的CN-B与CN-A比例和较低的磷酸酶活性。通过流动透析监测(45)Ca2+交换来评估异二聚体形成对Ca2+结合的影响。含有野生型CN-B以及位点1和2中的突变体的酶从两个位点缓慢交换(45)Ca2+,而位点3和4中的突变体从单个位点缓慢交换(45)Ca2+。这些数据表明,与位点1和2结合的Ca2+可能随Ca2+浓度而变化,并可能在酶功能的动态调节中起作用,而钙结合位点3和4始终处于饱和状态,与这些位点结合的Ca2+具有结构作用。