Sudhaharan T, Reddy A R
Department of Chemistry, Nizam College, Hyderabad 500 001 AP, India.
Biochemistry. 1998 Mar 31;37(13):4451-8. doi: 10.1021/bi972116m.
The effects of three opiate analgesics, isolated from opium, on the firefly luciferase enzyme have been studied. Morphine (MN), 6-acetylmorphine (MAM), and diacetylmorphine (DAM) inhibited the enzyme activity at different levels. At lower concentrations, MN and MAM enhanced enzyme activity, effecting inhibition at higher concentrations. However, DAM inhibited the enzyme activity at all concentrations investigated. The stimulating activity of MN and MAM is attributed to the hydrophilic interaction of the proton donor-acceptor type with the polar regions of the luciferase located outside the binding pocket of the active site. The inhibition at higher concentrations of MN and MAM and at all concentrations of DAM is found to be competitive in nature, with the analgesics competing for the binding of the enzyme's natural substrate luciferin. The binding site of the luciferase could accommodate only one analgesic molecule. Binding constants determined from bioluminescence studies showed that the inhibitor binding site is hydrophobic in nature. The inhibition constants of analgesics are in the order MN > MAM > DAM. The greater binding of DAM to luciferase is attributed to its ability to form a ground state complex with ATP and greater hydrophobicity. At higher concentrations of ATP, the binding constants increased. The results obtained are explained assuming that the firefly luciferase acts as a subtype mu-opioid receptor model.
研究了从鸦片中分离出的三种阿片类镇痛药对萤火虫荧光素酶的影响。吗啡(MN)、6-乙酰吗啡(MAM)和二乙酰吗啡(DAM)在不同程度上抑制了该酶的活性。在较低浓度下,MN和MAM增强了酶的活性,而在较高浓度下则产生抑制作用。然而,DAM在所有研究浓度下均抑制酶的活性。MN和MAM的刺激活性归因于质子供体-受体类型与位于活性位点结合口袋外部的荧光素酶极性区域的亲水相互作用。发现MN和MAM在较高浓度下以及DAM在所有浓度下的抑制作用本质上是竞争性的,即这些镇痛药竞争酶的天然底物荧光素的结合。荧光素酶的结合位点只能容纳一个镇痛药分子。通过生物发光研究确定的结合常数表明,抑制剂结合位点本质上是疏水的。镇痛药的抑制常数顺序为MN>MAM>DAM。DAM与荧光素酶的更大结合归因于其与ATP形成基态复合物的能力以及更大的疏水性。在较高浓度的ATP下,结合常数增加。假设萤火虫荧光素酶作为μ-阿片受体亚型模型,对所得结果进行了解释。