Gonsior S M, Gautel M, Hinssen H
Biochemical Cell Biology Group, University of Bielefeld, Germany.
J Muscle Res Cell Motil. 1998 Apr;19(3):225-35. doi: 10.1023/a:1005372915268.
We have investigated the interaction of a 6-repeat recombinant human nebulin fragment (S6R2R7) with F-actin, with Mg2+-induced actin paracrystals, and G-actin, respectively. This fragment corresponds to super-repeat 6, repeat 2 to 7 of human nebulin, and is located in the N-terminal part of the super-repeat region of the nebulin molecule. The S6R2R7 fragment included an immuno-tag of three amino-acid residues (EEF) at one end which was detectable by a monoclonal anti-tubulin YL1/2. By a cosedimentation assay, interaction between F-actin and S6R2R7 was observed. Electron microscopy revealed the formation of large bundle-like aggregates containing highly parallelized actin filaments, apparently caused by actin bundling of the nebulin fragment. Compared with Mg2+-induced actin paracrystals where the helices of the actin filaments are arranged in register, the filaments in the actin-nebulin bundles seem to be packed in a different way and show no obvious periodicity. The bundles were also visible in the light microscope, and immunofluorescence microscopy revealed binding of the nebulin fragment S6R2R7 to both preformed Mg2+ paracrystals and to F-actin. We also analyzed the effect of S6R2R7 on actin under non-polymerizing conditions by cosedimentation assays and pyrene actin fluorimetry, as well as fluorescence microscopy and electron microscopy. Nebulin-induced actin polymerization was observed with an enhancement of the nucleation step indicating a stabilization of actin nuclei by S6R2R7. Light and electron microscopy revealed bundle-like actin-nebulin aggregates similar to those formed by pre-assembled F-actin and S6R2R7. Thus, even in the absence of salt, S6R2R7 promotes actin polymerization and induces formation of tightly packed actin filament bundles. We assume that the actin filaments are crosslinked by the nebulin fragments, indicating a rather low cooperativity of binding to a single filament.
我们分别研究了一种6重复重组人伴肌动蛋白片段(S6R2R7)与F-肌动蛋白、Mg2+诱导的肌动蛋白副晶体以及G-肌动蛋白之间的相互作用。该片段对应于人伴肌动蛋白的超重复序列6、重复序列2至7,位于伴肌动蛋白分子超重复区域的N端部分。S6R2R7片段一端包含一个由三个氨基酸残基组成的免疫标签(EEF),可被抗微管蛋白单克隆抗体YL1/2检测到。通过共沉降分析,观察到F-肌动蛋白与S6R2R7之间的相互作用。电子显微镜显示形成了包含高度平行排列的肌动蛋白丝的大束状聚集体,这显然是由伴肌动蛋白片段的肌动蛋白成束作用引起的。与Mg2+诱导的肌动蛋白副晶体中肌动蛋白丝的螺旋呈对齐排列不同,肌动蛋白-伴肌动蛋白束中的丝似乎以不同的方式堆积,且没有明显的周期性。这些束在光学显微镜下也可见,免疫荧光显微镜显示伴肌动蛋白片段S6R2R7与预先形成的Mg2+副晶体以及F-肌动蛋白均有结合。我们还通过共沉降分析、芘肌动蛋白荧光测定法以及荧光显微镜和电子显微镜分析了S6R2R7在非聚合条件下对肌动蛋白的影响。观察到伴肌动蛋白诱导的肌动蛋白聚合,成核步骤增强,表明S6R2R7可稳定肌动蛋白核。光学和电子显微镜显示出与预先组装的F-肌动蛋白和S6R2R7形成的类似的束状肌动蛋白-伴肌动蛋白聚集体。因此,即使在无盐的情况下,S6R2R7也能促进肌动蛋白聚合并诱导形成紧密堆积的肌动蛋白丝束。我们推测肌动蛋白丝由伴肌动蛋白片段交联,这表明与单根丝结合的协同性相当低。