Martini Daniela, Ranieri-Raggi Maria, Sabbatini Antonietta R M, Moir Arthur J G, Polizzi Enza, Mangani Stefano, Raggi Antonio
Dipartimento di Scienze dell'Uomo e dell'Ambiente, Chimica e Biochimica Medica, Università di Pisa, Via Roma 55, 56126 Pisa, Italy.
Biochim Biophys Acta. 2007 Dec;1774(12):1508-18. doi: 10.1016/j.bbapap.2007.10.004. Epub 2007 Oct 12.
We have previously provided evidence for a dinuclear zinc site in rabbit skeletal muscle AMPD compatible with a (micro-aqua)(micro-carboxylato)dizinc(II) core with an average of two histidine residues at each metal site. XAS of the zinc binding site of the enzyme in the presence of PRN favors a model where PRN is added to the coordination sphere of one of the two zinc ions increasing its coordination number to five. The uncompetitive nature of the inhibition of AMPD by fluoride reveals that the anion probably displaces the nucleophile water molecule terminally coordinated to the catalytic Zn(1) ion at the enzyme C-terminus, following the binding of AMP at the Zn(2) ion located at N-terminus of the enzyme. Thus, the two Zn ions in the AMPD metallocenter operate together as a single catalytic unit, but have independent function, one of them (Zn(1)) acting to polarize the nucleophile water molecule, whilst the other (Zn(2)) acts transiently as a receptor for an activating substrate molecule. The addition of fluoride to AMPD also abolishes the cooperative behaviour induced in the enzyme by the inhibitory effect of ATP at acidic pH that probably resides in the competition with the substrate for an adenine nucleotide specific regulatory site located in the Zn(2) ion binding region and which is responsible for the positive homotropic cooperativity behaviour of AMPD.
我们之前已提供证据,证明兔骨骼肌腺苷酸脱氨酶(AMPD)中存在一个双核锌位点,该位点与一个(微水)(微羧基)二锌(II)核心兼容,每个金属位点平均有两个组氨酸残基。在存在PRN的情况下,该酶锌结合位点的X射线吸收光谱(XAS)支持一种模型,即PRN添加到两个锌离子之一的配位球中,使其配位数增加到5。氟化物对AMPD抑制作用的非竞争性性质表明,在AMPD的N端锌离子(Zn(2))处结合AMP后,阴离子可能取代了在酶C端与催化性锌(1)离子末端配位的亲核水分子。因此,AMPD金属中心的两个锌离子作为一个单一催化单元共同起作用,但具有独立功能,其中一个(Zn(1))用于使亲核水分子极化,而另一个(Zn(2))则暂时作为活化底物分子的受体。向AMPD中添加氟化物也消除了在酸性pH下ATP的抑制作用在该酶中诱导的协同行为,这种协同行为可能在于与底物竞争位于Zn(2)离子结合区域的腺嘌呤核苷酸特异性调节位点,该位点负责AMPD的正同促协同行为。