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Mode of caldesmon binding to smooth muscle thin filament: possible projection of the amino-terminal of caldesmon from native thin filament.

机译:卡尔德斯蒙与平滑肌细丝结合的模式:卡尔德斯蒙的氨基末端可能从天然细丝投射出来。

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摘要

The structure of smooth muscle thin filament was examined by various electron microscopy techniques, with special attention to the mode of caldesmon binding. Chemical cross-linking was positively used to avoid the dissociation of accessory proteins upon dilution. Caldesmon in reconstituted thin filament was observed as fine filamentous projections from thin filament. Native thin filament isolated from smooth muscle showed similarly numerous fine whisker-like projections by all the techniques employed here. Antibody against the amino-terminus of caldesmon labeled the end of such projections indicating the possibility that the amino-terminal myosin binding moiety might stick out from the shaft of the thin filament. Such whiskers are often projected out as a cluster to the same side of native thin filament. Further, we could visualize the assembly of dephosphorylated heavy meromyosin (HMM) with native or reconstituted thin filament forming "nonproductive" complex in the presence of ATP. The association of HMM to the shaft of thin filament was through subfragment-2 moiety, in accordance with biochemical studies. Some HMM particles bound closer to the thin filament shaft, possibly suggesting the presence of the second myosin-binding site on caldesmon. Occasionally two kinds of HMM association as such coexisted at a single site on this filament in tandem. Thus, we constructed a structural model of thin filament. The proposed molecular arrangement is not only compatible with all the biochemical results but also provides additional support for our recent findings (E. Katayoma, G. C. Scott-Woo, and M. Ikebe (1995) J. Biol. Chem. 270, 3919-3925) regarding the capability of caldesmon to induce dephosphorylated myosin filament, which explains the existence of thick filaments in relaxed smooth muscle cells.
机译:通过各种电子显微镜技术检查了平滑肌细丝的结构,特别注意了卡尔德斯蒙结合的模式。积极地使用化学交联来避免稀释后辅助蛋白的解离。观察到重组细丝中的Caldesmon是细丝的细丝状突起。从平滑肌分离出的天然细丝通过此处使用的所有技术表现出类似的许多细须状突起。针对卡尔德斯蒙氨基末端的抗体标记了这些突起的末端,表明氨基末端肌球蛋白结合部分可能从细丝的杆身伸出。这样的晶须通常作为簇投射到天然细丝的同一侧。此外,我们可以将脱磷酸化的重肌球蛋白(HMM)与天然或重构的细丝在ATP存在下形成“非生产性”复合物的组装过程可视化。根据生化研究,HMM与细丝杆的缔合是通过亚片段2部分。一些HMM颗粒更靠近细丝杆,可能表明在caldesmon上存在第二个肌球蛋白结合位点。有时,两种HMM关联在此细丝上的单个位置串联在一起共存。因此,我们构建了细丝的结构模型。提出的分子排列不仅与所有生化结果兼容,而且为我们最近的发现提供了额外的支持(E. Katayoma,GC Scott-Woo和M. Ikebe(1995)J. Biol。Chem。270,3919-3925 )关于卡尔德斯蒙诱导去磷酸化肌球蛋白丝的能力,这解释了松弛的平滑肌细胞中存在粗丝。

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