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Electrooptical measurements demonstrate a large permanent dipole moment associated with acetylcholinesterase.

机译:电光测量表明与乙酰胆碱酯酶相关的大的永久偶极矩。

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摘要

Acetylcholinesterase (AChE) from krait (Bungarus fasciatus) venom is a soluble, nonamphiphilic monomer of 72 kDa. This snake venom AChE has been analyzed by measurements of the stationary and the transient electric dichroism at different field strengths. The stationary values of the dichroism are consistent with the orientation function for permanent dipoles and are not consistent with the orientation function for induced dipoles. The permanent dipole moment obtained by least-squares fits for a buffer containing 5 mM MES is 1000 D, after correction for the internal directing field, assuming a spherical shape of the protein. The dipole moment decreases with increasing buffer concentration to 880 D at 10 mM MES and 770 D at 20 mM MES. The dichroism decay time constant is 90 ns (+/- 10%) which is clearly larger than the value expected from the size/shape of the protein and indicates contributions from sugar residues attached to the protein. The dichroism rise times observed at low field strengths are larger than the decay times and, thus, support the assignment of a permanent dipole moment, although it has not been possible to approach the limit where the energy of the dipole in the electric field is sufficiently low compared to kT. The experimental value of the permanent dipole moment is similar to that calculated for a model structure of Bungarus fasciatus AChE, which has been constructed from its amino and acid sequence, in analogy to the crystal structure of AChE from Torpedo californica.
机译:来自Krait(Bungarus fasciatus)毒液的乙酰胆碱酯酶(AChE)是72 kDa的可溶性非两亲单体。该蛇毒AChE已通过测量不同场强下的静态和瞬态二向色性进行了分析。二向色性的固定值与永久偶极子的定向函数一致,而与感应偶极子的定向函数不一致。假设蛋白质为球形,在校正内部方向场后,通过最小二乘获得的永久偶极矩适合包含5 mM MES的缓冲液为1000D。偶极矩随着缓冲液浓度的增加而降低,在10 mM MES时为880 D,在20 mM MES时为770D。二向色性衰减时间常数为90 ns(+/- 10%),明显大于蛋白质大小/形状所预期的值,并表明附着于蛋白质的糖残基的贡献。在低电场强度下观察到的二向色性上升时间大于衰减时间,因此支持永久偶极矩的分配,尽管不可能达到电场中偶极子能量足够大的极限比kT低。永久偶极矩的实验值类似于根据其Torpedo californica的AChE的晶体结构,从其氨基酸和氨基酸序列构建的Bungarus fasciatus AChE的模型结构计算得出的值。

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