Bicknese S, Rossi M, Thevenin B, Shohet S B, Verkman A S
Department of Medicine, University of California, San Francisco 94143-0521, USA.
Biochemistry. 1995 Aug 22;34(33):10645-51. doi: 10.1021/bi00033a040.
Time-resolved anisotropy was utilized to detect nanosecond segmental motions of the band 3 intramembrane domain. Band 3 at lysine 430 was fluorescently labeled in ghost membranes by fluorescein or eosin maleimide treatment of intact human erythrocytes followed by hypotonic lysis. Single lifetimes for fluorescein (3.8-4.1 ns) and eosin (3.2-3.4 ns) were observed. Phase-modulation measurement of anisotropy decay indicated a segmental motion model, r(t) = exp(-t/tau 1c)[r infinity + (ro-r infinity) exp(-t/tau 2c)], defined by rotational correlation times corresponding to band 3 segmental motion (tau 1c, 30-70 ns) and rapid fluorescein motion in its binding pocket (tau 2c, 200-400 ps), and a residual anisotropy (r infinity, 0.23-0.28) describing hindered fluorescein motion. In PBS at pH 7.4, tau 1c, tau 2c, and r infinity were 44 ns, 307 ps, and 0.24, respectively, predicting a steady-state anisotropy of 0.24, in agreement with the measured value of 0.23. Factors that might influence band 3 structure/dynamics were examined. Whereas pH (range 5-10) had little effect on r(t), [NaCl] addition (0-150 mM) remarkably decreased tau 1c from 68 to 44 ns. The decrease in tau 1c correlated with solution ionic strength, and did not depend on osmolality (studied by mannitol addition), or specific anion interactions (comparing Cl, Br, F, SO4, citrate). The ionic strength effect was not observed in fluorescein-labeled carbonic anhydrase and trypsin-cleaved band 3, suggesting a specific effect on intact band 3. Anisotropy decay was relatively insensitive to external lectin or internal 2,3-DPG binding, but was sensitive to temperature, membrane fluidity, urea denaturation, fluid-phase viscosity, and aldehyde fixation.(ABSTRACT TRUNCATED AT 250 WORDS)
利用时间分辨各向异性来检测带3膜内结构域的纳秒级片段运动。通过用荧光素或曙红马来酰亚胺处理完整的人红细胞,随后进行低渗裂解,在血影膜中对赖氨酸430处的带3进行荧光标记。观察到荧光素(3.8 - 4.1纳秒)和曙红(3.2 - 3.4纳秒)的单一寿命。各向异性衰减的相位调制测量表明了一种片段运动模型,r(t) = exp(-t/tau 1c)[r infinity + (ro - r infinity) exp(-t/tau 2c)],该模型由对应于带3片段运动的旋转相关时间(tau 1c,30 - 70纳秒)和荧光素在其结合口袋中的快速运动(tau 2c,200 - 400皮秒)以及描述受阻荧光素运动的残余各向异性(r infinity,0.23 - 0.28)定义。在pH 7.4的磷酸盐缓冲盐溶液(PBS)中,tau 1c、tau 2c和r infinity分别为44纳秒、307皮秒和0.24,预测稳态各向异性为0.24,与测量值0.23一致。研究了可能影响带3结构/动力学的因素。虽然pH(5 - 10范围)对r(t)影响不大,但添加[NaCl](0 - 150 mM)会使tau 1c从68纳秒显著降至44纳秒。tau 1c的降低与溶液离子强度相关,且不依赖于渗透压(通过添加甘露醇研究)或特定阴离子相互作用(比较Cl、Br、F、SO4、柠檬酸盐)。在荧光素标记的碳酸酐酶和胰蛋白酶切割的带3中未观察到离子强度效应,表明对完整带3有特定影响。各向异性衰减对外部凝集素或内部2,3 - 二磷酸甘油酸(2,3 - DPG)结合相对不敏感,但对温度、膜流动性、尿素变性、液相粘度和醛固定敏感。(摘要截断于250字)