Cox J A, Durussel I, Comte M, Nef S, Nef P, Lenz S E, Gundelfinger E D
Department of Biochemistry, University of Geneva, Switzerland.
J Biol Chem. 1994 Dec 30;269(52):32807-13.
VILIP and NCS-1, neural-specific, 22-kDa Ca(2+)-binding proteins possessing four EF-hands, were expressed in Escherichia coli to study their divalent cation properties. Flow dialysis (Ca2+ binding) and equilibrium gel filtration (Mg2+ binding) revealed that both recombinant proteins possess only two active metal-binding sites, which can accommodate either Ca2+ or Mg2+. VILIP binds cations without cooperativity with intrinsic affinity constants K'Ca of 1.0 x 10(6) M-1 and K'Mg of 4.8 x 10(3) M-1.Mg2+ antagonizes Ca2+ binding by shifting the isotherms to higher free Ca2+ concentrations without changing their shape. The competition equation yields a K'Mg, comp value of 180 M-1 for both sites. NCS-1 binds two Mg2+ without cooperativity with K'Mg of 8.3 x 10(4) M-1 and two Ca2+ with very strong positive cooperativity (nH = 1.96). In the absence of Mg2+ the K'Ca1 and K'Ca2 values are 8.9 x 10(4) and 1.4 x 10(8) M-1, respectively, which represent an allosteric increase of 1600-fold. Mg2+ shifts the Ca(2+)-binding isotherms to higher Ca2+ concentrations, yielding a K'Mg, comp value of 800 M-1 for both sites. Thus VILIP and NCS-1 show three remarkable differences in the Ca2+/Mg2+ binding parameters: 1) VILIP binds Ca2+ with much lower affinity than NCS-1; 2) VILIP binds Ca2+ in a noncooperative way, whereas NCS-1 shows maximal positive cooperativity; 3) in VILIP the Mg2+/Ca2+ antagonism is much weaker than in NCS-1. Conformational changes monitored by Trp fluorescence indicate that the metal-free forms already are highly structured. Ca2+ binding promotes a 20-30% increase of fluorescence in both proteins, but whereas the Mg2+ form of VILIP has the same fluorescence properties as the metal-free form, Mg(2+)-saturated NCS-1 has those of the Ca2+ form. Near UV difference spectra confirmed that in VILIP the Mg2+ form is very similar to the metal-free form; in NCS-1 it is different, especially in the Tyr region. NCS-1 possesses one unique Cys-38 in EF-hand site I. Its reactivity (kSH) toward 5,5'-dithiobis-(2-nitrobenzoic acid) (DTNB) is the same for the Ca(2+)- and Mg(2+)-loaded protein, but kSH is 4-fold higher in metal-free NCS-1. VILIP possesses two additional thiols, one of which is inaccessible to DTNB in the native protein. The reactivity of the two accessible thiols is identical in the metal-free and Mg2+ forms and 5-fold higher than in the Ca2+ form.(ABSTRACT TRUNCATED AT 400 WORDS)
VILIP和NCS-1是神经特异性的、22 kDa的具有四个EF手型结构的Ca(2+)结合蛋白,在大肠杆菌中表达以研究它们的二价阳离子特性。流动透析(Ca2+结合)和平衡凝胶过滤(Mg2+结合)显示,两种重组蛋白都仅拥有两个活性金属结合位点,可容纳Ca2+或Mg2+。VILIP结合阳离子时无协同性,其固有亲和常数K'Ca为1.0×10(6) M-1,K'Mg为4.8×10(3) M-1。Mg2+通过将等温线移至更高的游离Ca2+浓度来拮抗Ca2+结合,而不改变其形状。竞争方程得出两个位点的K'Mg, comp值均为180 M-1。NCS-1结合两个Mg2+时无协同性,K'Mg为8.3×10(4) M-1,结合两个Ca2+时具有很强的正协同性(nH = 1.96)。在没有Mg2+的情况下,K'Ca1和K'Ca2值分别为8.9×10(4)和1.4×10(8) M-1,这代表了1600倍的变构增加。Mg2+将Ca(2+)结合等温线移至更高的Ca2+浓度,两个位点的K'Mg, comp值均为800 M-1。因此,VILIP和NCS-1在Ca2+/Mg2+结合参数上表现出三个显著差异:1)VILIP结合Ca2+的亲和力远低于NCS-1;2)VILIP以非协同方式结合Ca2+,而NCS-1表现出最大正协同性;3)在VILIP中,Mg2+/Ca2+拮抗作用比NCS-1弱得多。通过色氨酸荧光监测的构象变化表明,无金属形式已经高度结构化。Ca2+结合使两种蛋白的荧光增强20 - 30%,但VILIP的Mg2+形式与无金属形式具有相同的荧光特性,而Mg(2+)饱和的NCS-1具有Ca2+形式的荧光特性。近紫外差光谱证实,在VILIP中,Mg2+形式与无金属形式非常相似;在NCS-1中则不同,尤其是在酪氨酸区域。NCS-1在EF手型结构I中拥有一个独特的半胱氨酸-38。其对5,5'-二硫代双-(2-硝基苯甲酸)(DTNB)的反应性(kSH)对于Ca(2+)和Mg(2+)负载的蛋白相同,但在无金属的NCS-1中kSH高4倍。VILIP拥有另外两个硫醇,其中一个在天然蛋白中对DTNB不可及。两个可及硫醇的反应性在无金属和Mg2+形式中相同,且比Ca2+形式高5倍。(摘要截断于400字)