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探究牛α-乳白蛋白的不同构象状态:用4,4'-双[1-(苯氨基)-8-萘磺酸盐]进行荧光研究

Probing different conformational states of bovine alpha-lactalbumin: fluorescence studies with 4,4'-bis[1-(phenylamino)-8-naphthalenesulfonate].

作者信息

Musci G, Berliner L J

出版信息

Biochemistry. 1985 Jul 16;24(15):3852-6. doi: 10.1021/bi00336a006.

DOI:10.1021/bi00336a006
PMID:3931671
Abstract

The binding of the fluorescent probe 4,4'-bis[1-(phenylamino)-8-naphthalenesulfonate] (bis-ANS) to bovine alpha-lactalbumin (alpha-LA) was investigated. A strong dependence of the Kd value with the bound calcium stoichiometry was found, with Kd values ranging from 6.2 +/- 0.4 to 64.6 +/- 5.9 microM for apo-alpha-LA and 1:1 Ca(II)-alpha-LA, respectively. A 350-fold enhancement of the bis-ANS emission was observed in the protein-bis-ANS complex, along with an approximately 33-nm blue shift. Both appeared to be related to the hydrophobicity of the binding site and were independent of the Ca(II) ion content. From the difference in bis-ANS affinity between apo-alpha-LA and Ca(II)-alpha-LA, we demonstrated that Zn(II) and Al(III) were able to "lock" the protein into a new "apo-like" conformation, which was similar to, but not identical with, the apo conformation. The protein could be interconverted between all three conformations in a Mn(II) titration. The first Mn(II) shifted the apoprotein to the Ca(II) conformation; at higher Mn(II) levels, binding to the second site shifted the protein toward the apo-like conformation. The same behavior was observed with calcium in large excess. The evidence supported a model for the mutually nonexclusive binding of metals both to site I ("calcium site") and to site II ("zinc site") simultaneously. The results suggest that alpha-lactalbumin possesses a hydrophobic surface that becomes somewhat less accessible upon 1:1 calcium binding in the absence of metals that also bind to the zinc site.

摘要

研究了荧光探针4,4'-双1-(苯氨基)-8-萘磺酸盐与牛α-乳白蛋白(α-LA)的结合。发现Kd值与结合钙的化学计量有很强的依赖性,脱辅基α-LA和1:1 Ca(II)-α-LA的Kd值分别为6.2±0.4至64.6±5.9μM。在蛋白质-双-ANS复合物中观察到双-ANS发射增强了350倍,同时伴有约33nm的蓝移。两者似乎都与结合位点的疏水性有关,且与Ca(II)离子含量无关。根据脱辅基α-LA和Ca(II)-α-LA之间双-ANS亲和力的差异,我们证明Zn(II)和Al(III)能够将蛋白质“锁定”为一种新的“脱辅基样”构象,该构象与脱辅基构象相似但不完全相同。在Mn(II)滴定中,蛋白质可以在所有三种构象之间相互转换。第一个Mn(II)将脱辅基蛋白转变为Ca(II)构象;在较高的Mn(II)水平下,与第二个位点的结合使蛋白质向脱辅基样构象转变。在大量过量钙的情况下也观察到了相同的行为。证据支持了一种金属同时与位点I(“钙位点”)和位点II(“锌位点”)相互非排他性结合的模型。结果表明,α-乳白蛋白具有一个疏水表面,在没有与锌位点结合的金属存在时,1:1钙结合后该表面的可及性会有所降低。

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