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交联肌球蛋白亚片段1的半胱氨酸-697和半胱氨酸-707会改变ATP与肌动蛋白结合位点的相互作用。

Cross-linking myosin subfragment 1 Cys-697 and Cys-707 modifies ATP and actin binding site interactions.

作者信息

Kirshenbaum K, Papp S, Highsmith S

机构信息

Department of Biochemistry, University of the Pacific School of Dentistry, San Francisco, California 94115-2399.

出版信息

Biophys J. 1993 Sep;65(3):1121-9. doi: 10.1016/S0006-3495(93)81162-7.

Abstract

Skeletal muscle myosin is an enzyme that interacts allosterically with MgATP and actin to transduce the chemical energy from ATP hydrolysis into work. By modifying myosin structure, one can change this allosteric interaction and gain insight into its mechanism. Chemical cross-linking with N,N'-p-phenylenedimaleimide (pPDM) of Cys-697 to Cys-707 of the myosin-ADP complex eliminates activity and produces a species that resembles myosin with ATP bound (Burke et al., 1976). Nucleotide-free pPDM-modified myosin subfragment 1 (S1) was prepared, and its structural and allosteric properties were investigated by comparing the nucleotide and actin interactions of S1 to those of pPDM-S1. The structural properties of the nucleotide-free pPDM-S1 are different from those of S1 in several respects. pPDM-S1 intrinsic tryptophan fluorescence intensity is reduced 28%, indicating a large increase of an internal quenching reaction (the fluorescence intensity of the related vanadate complex of S1, S1-MgADP-Vi, is reduced by a similar degree). Tryptophan fluorescence anisotropy increases from 0.168 for S1 to 0.192 for pPDM-S1, indicating that the unquenched tryptophan population in pPDM-S1 has reduced local freedom of motion. The actin affinity of pPDM-S1 is over 6,000-fold lower than that of S1, and the absolute value of the product of the net effective electric charges at the acto-S1 interface is reduced from 8.1 esu2 for S1 to 1.6 esu2 for pPDM-S1. In spite of these changes, the structural response of pPDM-S1 to nucleotide and the allosteric communication between its ATP and actin sites remain intact. Compared to pPDM-S1, the fluorescence intensity of pPDM-S1 *MgADP is increased 50%(compared to 8 and 31% increases, respectively, for MgADP and MgATP binding to S1). Compared to acto-pPDM-S1, the absolute value of the product of the net effective electric charge at the actin binding interface of acto-pPDM-S1 *MgADP increases 7.3 esu2 (compared to a 0.9 esu2 decrease and an 11.0 esu2 increase, respectively, for MgADP and MgATP binding to acto-Sl).The interaction free energy for the ligands MgADP and actin, is -2.0 kcal/mol for pPDM-S1, compared to -1.2 kcal/mol for unmodified S1.

摘要

骨骼肌肌球蛋白是一种酶,它与MgATP和肌动蛋白发生变构相互作用,将ATP水解产生的化学能转化为功。通过改变肌球蛋白结构,可以改变这种变构相互作用并深入了解其机制。用N,N'-对苯二马来酰亚胺(pPDM)将肌球蛋白-ADP复合物的Cys-697与Cys-707进行化学交联会消除活性,并产生一种类似于结合了ATP的肌球蛋白的物质(伯克等人,1976年)。制备了无核苷酸的pPDM修饰的肌球蛋白亚片段1(S1),并通过比较S1与pPDM-S1的核苷酸和肌动蛋白相互作用来研究其结构和变构性质。无核苷酸的pPDM-S1的结构性质在几个方面与S1不同。pPDM-S1的内在色氨酸荧光强度降低了28%,表明内部猝灭反应大幅增加(S1的相关钒酸盐复合物S1-MgADP-Vi的荧光强度也有类似程度的降低)。色氨酸荧光各向异性从S1的0.168增加到pPDM-S1的0.192,表明pPDM-S1中未猝灭的色氨酸群体的局部运动自由度降低。pPDM-S1对肌动蛋白的亲和力比S1低6000多倍,肌动蛋白-S1界面处净有效电荷乘积的绝对值从S1的8.1 esu2降低到pPDM-S1的1.6 esu2。尽管有这些变化,pPDM-S1对核苷酸的结构响应及其ATP和肌动蛋白位点之间的变构通讯仍然完好无损。与pPDM-S1相比,pPDM-S1MgADP的荧光强度增加了50%(相比之下,MgADP和MgATP与S1结合时荧光强度分别增加了8%和31%)。与肌动蛋白-pPDM-S1相比,肌动蛋白-pPDM-S1MgADP的肌动蛋白结合界面处净有效电荷乘积的绝对值增加了7.3 esu2(相比之下,MgADP和MgATP与肌动蛋白-S1结合时分别减少了0.9 esu2和增加了11.0 esu2)。对于配体MgADP和肌动蛋白,pPDM-S1的相互作用自由能为-2.0 kcal/mol,而未修饰的S1为-1.2 kcal/mol。

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1
Myosin-ATP chemomechanics.肌球蛋白 - ATP 化学力学
Biochemistry. 1993 Mar 16;32(10):2455-8. doi: 10.1021/bi00061a001.

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