Halkides C J, Farrar C T, Larsen R G, Redfield A G, Singel D J
Department of Biochemistry, Brandeis University, Waltham, Massachusetts 02254.
Biochemistry. 1994 Apr 5;33(13):4019-35. doi: 10.1021/bi00179a031.
Selectively labeled samples of human H- or N-ras p21 ligated to MnIIGDP or MnIIGMPPNP were studied by electron spin-echo envelope modulation spectroscopy in order to define the protein environment around the divalent metal. We incorporated [4-13C]-labeled Asx into p21.MnIIGDP and found that the distance from the carboxyl 13C of Asp57 to MnII is approximately 4.1 A. Our result is consistent with indirect coordination of this residue to the metal. From a [2-2H]Thr-labeled sample, we estimate that the distance from the MnII ion to the 2H of Thr35 is at least 5.8 A. Thus, the only protein or nucleotide ligands to the metal appear to be Ser17 and the beta-phosphate of GDP, as previously reported [Larsen, R. G., Halkides, C. J., Redfield, A. G., & Singel, D. J. (1992b) J. Am. Chem. Soc. 114, 9608-9611]. In the 5'-guanylylimido diphosphate (GMPPNP) form of p21, Thr35 has been reported by X-ray crystallography to be a ligand of the metal via its hydroxyl group, and this residue appears to play a key role in the biologically important conformational change upon nucleotide substitution [Pai, E. F., Krengel, U., Petsko, G., Goody, R. S., Kabsch, W., & Wittinghofer, A. (1990) EMBO J. 9, 2351-2359]. The ESEEM spectrum of p21.MnIIGMPPNP labeled with [2-2H]Thr yields a MnII-2H distance of 4.9 A, a distance inconsistent with strong coordination. A sample of p21 in which the Thr residues were fully labeled with 13C and 15N yielded a value of 5.0 A for the distance from MnII to the amide nitrogen of Thr35, while the 13C signal is much smaller than expected if Thr35 were coordinated. A [15N]serine/glycine-labeled sample gives a distance to the amide 15N of Ser17 of 3.9 A, consistent with the X-ray structure; a [4-13C]-labeled Asx sample of p21 gives a distance of approximately 4 A between MnII and the label of Asp57, again implying indirect coordination. Both of these values are very similar to those found for the GDP form of the protein. The results for Thr35, however, reveal a structural difference between the GDP and GTP forms in the region of Thr35. In addition, the position of this residue is found to be different from the crystal structure and in a manner suggesting that the metal ligation of Thr35 does not drive the conformational change that accompanies nucleotide substitution.
为了确定二价金属周围的蛋白质环境,我们通过电子自旋回波包络调制光谱法研究了与MnII-GDP或MnII-GMPPNP连接的人H-ras或N-ras p21的选择性标记样品。我们将[4-13C]标记的Asx掺入p21.MnII-GDP中,发现从Asp57的羧基13C到MnII的距离约为4.1埃。我们的结果与该残基与金属的间接配位一致。从[2-2H]Thr标记的样品中,我们估计从MnII离子到Thr35的2H的距离至少为5.8埃。因此,如先前报道[Larsen, R. G., Halkides, C. J., Redfield, A. G., & Singel, D. J. (1992b) J. Am. Chem. Soc. 114, 9608-9611],金属的唯一蛋白质或核苷酸配体似乎是Ser17和GDP的β-磷酸基团。在p21的5'-鸟苷酰亚胺二磷酸(GMPPNP)形式中,X射线晶体学已报道Thr35通过其羟基作为金属的配体,并且该残基似乎在核苷酸取代后的生物学重要构象变化中起关键作用[Pai, E. F., Krengel, U., Petsko, G., Goody, R. S., Kabsch, W., & Wittinghofer, A. (1990) EMBO J. 9, 2351-2359]。用[2-2H]Thr标记的p21.MnII-GMPPNP的ESEEM光谱给出MnII-2H距离为4.9埃,该距离与强配位不一致。Thr残基用13C和15N完全标记的p21样品给出从MnII到Thr35的酰胺氮的距离值为5.0埃,而如果Thr35配位,13C信号比预期小得多。[15N]丝氨酸/甘氨酸标记的样品给出到Ser17的酰胺15N的距离为3.9埃,与X射线结构一致;p21的[4-13C]标记的Asx样品给出MnII与Asp57的标记之间的距离约为4埃,再次暗示间接配位。这两个值与蛋白质的GDP形式中发现的值非常相似。然而,Thr35的结果揭示了GDP和GTP形式在Thr35区域的结构差异。此外,发现该残基的位置与晶体结构不同,并且其方式表明Thr35的金属配位不会驱动伴随核苷酸取代的构象变化。