首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Visualization of the polarity of isolated titin molecules: a single globular head on a long thin rod as the M band anchoring domain?
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Visualization of the polarity of isolated titin molecules: a single globular head on a long thin rod as the M band anchoring domain?

机译:可视化的孤立的titin分子的极性:长细杆上的单个球形头部作为M波段锚定域?

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摘要

TII, the extractable form of titin, was purified from myofibrils and separated by high resolution gel permeation chromatography into two fractions (TIIA and TIIB). Novel specimen orientation methods used before metal shadowing and EM result in striking pictures of the two forms. Molecules layered on mica become uniformly oriented when subjected to centrifugation. TIIB comprises a very homogeneous fraction. All molecules reveal a single globular head at one end on a long and very thin rod of uniform diameter. The lengths of the rods have a very narrow distribution (900 +/- 50 nm). TIIA molecules seem lateral oligomers of TIIB, attached to each other via the head regions. While dimers are the predominant species, trimers and some higher oligomers can also be discerned. Mild proteolysis destroys the heads and converts TIIA and TIIB into TIIB-like rods. Similar molecules also result from titin purified from myofibrils by certain established purification schemes. Headless titin molecules show in gel electrophoresis only the TII band, while head bearing molecules give rise to two additional polypeptides at 165 and 190 kD. Immunoelectron microscopy of myofibrils identifies both titin-associated proteins as M band constituents. We speculate that in the polar images of TII the globular head region corresponds to the M band end of the titin molecules. This hypothesis is supported by immunoelectron micrographs of TIIB molecules using titin antibodies of known epitope location in the half sarcomere. This proposal complements our previous immunoelectron microscopic data on myofibrils. They showed that epitopes present only on the nonextractable TI species locate to the Z line and its immediately adjacent region (Furst, D. O., M. Osborn, R. Nave, and K. Weber. 1988. J. Cell Biol. 106:1563-1572). Thus, the two distinct ends of the titin molecule attach to Z and M band material respectively.
机译:从肌原纤维中纯化TII,即可取的滴定蛋白形式,并通过高分辨率凝胶渗透色谱分离为两部分(TIIA和TIIB)。在金属阴影和EM之前使用的新颖标本定向方法会产生两种形式的惊人图片。进行离心分离时,云母上的分子会变得均匀取向。 TIIB包含非常均匀的部分。所有分子在一根长且非常细的直径均匀的杆上的一端露出一个球形的头部。棒的长度具有非常窄的分布(900 +/- 50 nm)。 TIIA分子似乎是TIIB的侧向低聚物,它们通过头部区域相互连接。虽然二聚体是主要的物种,但是也可以看出三聚体和一些更高的低聚物。轻度的蛋白水解会破坏头部,并将TIIA和TIIB转变为类似TIIB的棒状。通过某些确定的纯化方案从肌原纤维纯化的滴定蛋白也可产生相似的分子。无头的泰坦分子在凝胶电泳中仅显示TII条带,而带有头的分子在165和190 kD处产生另外两个多肽。肌原纤维的免疫电子显微镜检查可将两种与titin相关的蛋白都鉴定为M带成分。我们推测在TII的极性图像中,球形头部区域对应于titin分子的M带末端。该假设得到了TIIB分子免疫电子显微照片的支持,该显微照片使用了在一半肌小节中具有已知表位的titin抗体。该提议补充了我们先前关于肌原纤维的免疫电子显微镜数据。他们表明,仅存在于不可提取的TI物种上的表位位于Z线及其紧邻的区域(Furst,DO,M。Osborn,R。Nave和K. Weber。1988. J. Cell Biol。106:1563- 1572)。因此,titin分子的两个不同末端分别连接到Z和M带材料。

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