Dalbey R E, Wells J A, Yount R G
Biochemistry. 1983 Jan 18;22(2):490-6. doi: 10.1021/bi00271a036.
Recent experiments [Wells, J., & Yount, R. (1979) Proc. Natl. Acad. Sci. U.S.A. 76, 4966] have shown it is possible to trap MgADP and other nucleotides stably at the active site of myosin by cross-linking two thiol groups. A variety of cross-linking reagents including chelation of the two thiols by cobalt (III) phenanthroline or covalent reaction with N,N'-p-phenylenedimaleimide (pPDM) are effective trapping agents. No trapping of nucleotides occurs in the absence of divalent metals. Thus far Mg2+, Mn2+, Co2+, Ni2+, and Ca2+ but not Zn2+ all function to promote trapping of the 1:1 divalent metal-ADP complex and to enhance the rate of ATPase inactivation. Substitution-inert Cr(III) complexes of ADP, ATP, or pyrophosphate that bind very weakly or not at all to the active site are not trapped by cross-linking. While the stability of the trapped divalent metals varies, e.g., t1/2 of 0.5-7 days at 0 degree C, they are stable enough to permit accurate spectral measurements of the Mn2+ and Co2+ trapped complexes. Electron paramagnetic resonance (EPR) measurements of Mn2+ bound to 5'-adenylyl imidodiphosphate or complexed to myosin chymotryptic subfragment 1 indicate that the metal is bound at the active site. Circular dichroism (CD) and visible absorption studies of the Co2+ . ADP trapped complex indicate the metal ion is in an asymmetric octahedral environment. EPR and CD measurements show that the environment of the metal nucleotide is the same whether bound reversibly or stably trapped at the active site.
最近的实验[威尔斯,J.,&扬特,R.(1979年)《美国国家科学院院刊》76,4966]表明,通过交联两个巯基,可以将MgADP和其他核苷酸稳定地捕获在肌球蛋白的活性位点。多种交联试剂,包括用钴(III)菲咯啉螯合两个巯基或与N,N'-对苯二马来酰亚胺(pPDM)进行共价反应,都是有效的捕获剂。在没有二价金属的情况下不会发生核苷酸的捕获。到目前为止,Mg2+、Mn2+、Co2+、Ni2+和Ca2+(但不是Zn2+)都起到促进1:1二价金属-ADP复合物的捕获并提高ATP酶失活速率的作用。与活性位点结合非常弱或根本不结合的ADP、ATP或焦磷酸的取代惰性Cr(III)配合物不会通过交联被捕获。虽然捕获的二价金属的稳定性各不相同,例如在0℃下的半衰期为0.5 - 7天,但它们足够稳定,能够对捕获的Mn2+和Co2+配合物进行精确的光谱测量。对与5'-腺苷酰亚胺二磷酸结合或与肌球蛋白胰凝乳蛋白酶亚片段1络合的Mn2+进行电子顺磁共振(EPR)测量表明,该金属结合在活性位点。对Co2+·ADP捕获配合物的圆二色性(CD)和可见吸收研究表明,金属离子处于不对称八面体环境中。EPR和CD测量表明,无论金属核苷酸是可逆结合还是稳定捕获在活性位点,其环境都是相同的。