Li B, Stribley J A, Ticu A, Xie W, Schopfer L M, Hammond P, Brimijoin S, Hinrichs S H, Lockridge O
Eppley Institute, University of Nebraska Medical Center, Omaha 68198-6805, USA.
J Neurochem. 2000 Sep;75(3):1320-31. doi: 10.1046/j.1471-4159.2000.751320.x.
We have described recently an acetylcholinesterase (AChE) knockout mouse. While comparing the tissue distribution of AChE and butyrylcholinesterase (BChE), we found that extraction buffers containing Triton X-100 strongly inhibited mouse BChE activity. In contrast, buffers with Tween 20 caused no inhibition of BChE. Conventional techniques grossly underestimated BChE activity by up to 15-fold. In Tween 20 buffer, the intestine, serum, lung, liver, and heart had higher BChE than AChE activity. Only brain had higher AChE than BChE activity in AChE +/+ mice. These findings contradict the dogma, based mainly on observations in Triton X-100 extracts, that BChE is a minor cholinesterase in animal tissues. AChE +/- mice had 50% of normal AChE activity and AChE -/- mice had none, but all mice had similar levels of BChE activity. BChE was inhibited by Triton X-100 in all species tested, except rat and chicken. Inhibition was reversible and competitive with substrate binding. The active site of rat BChE was unique, having an arginine in place of leucine at position 286 (human BChE numbering) in the acyl-binding pocket of the active site, thus explaining the lack of inhibition of rat BChE by Triton X-100. The generally high levels of BChE activity in tissues, including the motor endplate, and the observation that mice live without AChE, suggest that BChE has an essential function in nullizygous mice and probably in wild-type mice as well.
我们最近描述了一种乙酰胆碱酯酶(AChE)基因敲除小鼠。在比较AChE和丁酰胆碱酯酶(BChE)的组织分布时,我们发现含有 Triton X - 100的提取缓冲液强烈抑制小鼠BChE活性。相比之下,含有吐温20的缓冲液不会抑制BChE。传统技术严重低估了BChE活性,低估幅度高达15倍。在吐温20缓冲液中,肠道、血清、肺、肝脏和心脏中的BChE活性高于AChE活性。在AChE +/+小鼠中,只有大脑中的AChE活性高于BChE活性。这些发现与主要基于在Triton X - 100提取物中的观察结果得出的教条相矛盾,该教条认为BChE是动物组织中的一种次要胆碱酯酶。AChE +/-小鼠的AChE活性为正常水平的50%,而AChE -/-小鼠则没有AChE活性,但所有小鼠的BChE活性水平相似。除大鼠和鸡外,在所有测试物种中,Triton X - 100均抑制BChE。这种抑制是可逆的,并且与底物结合具有竞争性。大鼠BChE的活性位点独特,在活性位点的酰基结合口袋中,第286位(以人BChE编号)的亮氨酸被精氨酸取代,这就解释了Triton X - 100对大鼠BChE缺乏抑制作用的原因。组织中(包括运动终板)普遍较高的BChE活性水平,以及小鼠在没有AChE的情况下仍能存活的观察结果,表明BChE在纯合缺失小鼠中以及可能在野生型小鼠中都具有重要功能。