Onishi H, Fujiwara K
Department of Structural Analysis, National Cardiovascular Center Research Institute, Osaka, Japan.
Biochemistry. 1990 Mar 27;29(12):3013-23. doi: 10.1021/bi00464a018.
When chicken gizzard heavy meromyosin (HMM) in its rigor complex with actin was reacted with the zero-length cross-linker 1-ethyl-3-[3-(dimethylamino)propyl]carbodiimide (EDC), HMM cross-linked with actin but also the two heads of the HMM molecule cross-linked to each other [Onishi, H., Maita, T., Matsuda, G., & Fujiwara, K. (1989) Biochemistry 28, 1898-1904, 1905-1912]. By ultracentrifugal fractionation of the EDC-treated acto-HMM in the presence of Mg-ATP, we obtained a preparation enriched for gizzard HMM with cross-linked heads. When HMM molecules in this preparation were rotary-shadowed and observed in an electron microscope, many head pairs were in contact with each other. The amount of HMM with cross-linked heads determined by electron microscopy was equal to that of the cross-linked NH2-terminal 24K tryptic fragments of HMM heavy chains determined by NaDodSO4 gel electrophoresis, indicating that this cross-linking is primarily responsible for the contact observed between two HMM heads. Most pairs of the contacted heads originated in the same HMM molecule, although a few pairs belonged to different HMM molecules. Cross-linking between the two heads of the same HMM molecule appeared to occur within the distal, more globular half of each head. However, the cross-linking sites were located at different positions within the globular portion. The actin-activated Mg-ATPase activity of the HMM sample treated with EDC in the presence of actin increased in a biphasic manner, depending on the concentration of F-actin, with two apparent association constants: 2.9 x 10(4) M-1 and one much less than 1 x 10(4) M-1. Since the apparent association constant obtained with the HMM control was similar to the latter value, the association constant for HMM molecules with cross-linked heads was identified to be the former value. The binding of HMM to actin was thus strengthened at least by a factor of 3 by the cross-linking between two HMM heads. These results suggest that HMM heads are trapped by treatment with EDC in the rigor complex configuration and that this configuration is retained even after the HMM has been released from actin. The EDC reactivity of rabbit skeletal muscle HMM, however, was different from that of chicken gizzard HMM. The treatment of acto-HMM complexes with EDC did not generate cross-linking between two skeletal muscle HMM heads.
当鸡胗重酶解肌球蛋白(HMM)与肌动蛋白处于僵直复合物状态时,使其与零长度交联剂1-乙基-3-[3-(二甲氨基)丙基]碳二亚胺(EDC)反应,HMM不仅与肌动蛋白交联,而且HMM分子的两个头部也相互交联[大西,H.,牧野,T.,松田,G.,&藤原,K.(1989年)《生物化学》28卷,1898 - 1904页,1905 - 1912页]。通过在Mg - ATP存在下对经EDC处理的肌动蛋白 - HMM进行超速离心分级分离,我们获得了一种富含头部交联的鸡胗HMM的制剂。当对该制剂中的HMM分子进行旋转投影并在电子显微镜下观察时,许多头部对相互接触。通过电子显微镜测定的头部交联的HMM量与通过NaDodSO4凝胶电泳测定的HMM重链的交联NH2末端24K胰蛋白酶片段的量相等,表明这种交联主要是导致两个HMM头部之间观察到的接触的原因。大多数相互接触的头部对源自同一个HMM分子,尽管有少数对属于不同的HMM分子。同一个HMM分子的两个头部之间的交联似乎发生在每个头部的远端、更呈球状的一半内。然而,交联位点位于球状部分内的不同位置。在肌动蛋白存在下用EDC处理的HMM样品的肌动蛋白激活的Mg - ATP酶活性以双相方式增加,这取决于F - 肌动蛋白的浓度,有两个表观缔合常数:2.9×10⁴ M⁻¹和一个远小于1×10⁴ M⁻¹的值。由于用HMM对照获得的表观缔合常数与后一个值相似,具有交联头部的HMM分子的缔合常数被确定为前一个值。因此,通过两个HMM头部之间的交联,HMM与肌动蛋白的结合至少增强了3倍。这些结果表明,HMM头部在僵直复合物构型中通过EDC处理被捕获,并且即使HMM从肌动蛋白上释放后这种构型仍被保留。然而,兔骨骼肌HMM的EDC反应性与鸡胗HMM不同。用EDC处理肌动蛋白 - HMM复合物不会在两个骨骼肌HMM头部之间产生交联。