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阳离子与牛α-乳白蛋白结合的高分辨率质子和激光光化学诱导动态核极化核磁共振研究。

High-resolution proton and laser photochemically induced dynamic nuclear polarization NMR studies of cation binding to bovine alpha-lactalbumin.

作者信息

Berliner L J, Koga K, Nishikawa H, Scheffler J E

机构信息

Department of Chemistry, Ohio State University, Columbus 43210.

出版信息

Biochemistry. 1987 Sep 8;26(18):5769-74. doi: 10.1021/bi00392a028.

Abstract

alpha-Lactalbumin (alpha-LA) is a calcium binding protein that also binds Mn(II), lanthanide ions, A1(III), Zn(II), Co(II). The structural implications of cation binding were studied by high-resolution proton (200 MHz) NMR and photochemically induced dynamic nuclear polarization (CIDNP) spectroscopy. Marked changes were observed in the NMR spectra of the apoprotein upon addition of a stoichiometric amount of calcium to yield Ca(II)-alpha-LA, manifested particularly in ring current shifted aliphatic peaks and in several shifts in the aromatic region, all of which were under slow exchange conditions. The CIDNP results showed that two surface-accessible tyrosine residues, assigned as Tyr-18 and -36, became inaccessible to the solvent upon addition of 1:1 Ca(II) to apo-alpha-lactalbumin, while Tyr-103 and Trp-104 remained completely accessible in both conformers. The proton NMR spectra of apo-alpha-LA and A1(III)-alpha-LA were extremely similar, which was also consistent with intrinsic fluorescence results [Murakami, K., & Berliner, L. J. (1983) Biochemistry 22, 3370-3374]. The paramagnetic cation Mn(II) bound to the strong calcium binding site on apo-alpha-LA but also to the weak secondary Ca(II) binding site(s) on Ca(II)-alpha-LA. It was also found that Co(II) bound to some secondary sites on Ca(II)-alpha-LA that overlapped the weak calcium site. All of the lanthanide shift reagents [Pr(III), Eu(III), Tb(III), Dy(III), Tm(III), Yb(III)] bound under slow exchange conditions; their relative affinities for apo-alpha-lactalbumin from competitive binding experiments were Dy(III), Tb(III), and Pr(III) greater than Ca(II) greater than Yb(III).

摘要

α-乳白蛋白(α-LA)是一种钙结合蛋白,它也能结合锰(II)、镧系离子、铝(III)、锌(II)、钴(II)。通过高分辨率质子(200 MHz)核磁共振和光化学诱导动态核极化(CIDNP)光谱研究了阳离子结合的结构影响。向脱辅基蛋白中加入化学计量的钙以生成Ca(II)-α-LA后,在脱辅基蛋白的核磁共振谱中观察到明显变化,特别是在环电流移动的脂肪族峰以及芳香族区域的几个位移中,所有这些都处于慢交换条件下。CIDNP结果表明,在向脱辅基α-乳白蛋白中加入1:1的Ca(II)后,两个可接近表面的酪氨酸残基(指定为Tyr-18和-36)变得无法被溶剂接近,而Tyr-103和Trp-104在两种构象中仍完全可接近。脱辅基α-LA和Al(III)-α-LA的质子核磁共振谱极其相似,这也与内在荧光结果一致[村上,K.,& 柏林纳,L. J.(1983年)《生物化学》22,3370 - 3374]。顺磁性阳离子锰(II)与脱辅基α-LA上的强钙结合位点结合,但也与Ca(II)-α-LA上的弱二级Ca(II)结合位点结合。还发现钴(II)与Ca(II)-α-LA上一些与弱钙位点重叠的二级位点结合。所有镧系位移试剂[Pr(III)、Eu(III)、Tb(III)、Dy(III)、Tm(III)、Yb(III)]在慢交换条件下结合;竞争结合实验表明它们对脱辅基α-乳白蛋白的相对亲和力为Dy(III)、Tb(III)和Pr(III)大于Ca(II)大于Yb(III)。

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