The cryo-EM 3D image reconstruction of isolated Lethocerus indicus Z-discs.

IF 1.8 3区 生物学 Q4 CELL BIOLOGY
Fatemeh Abbasi Yeganeh, Corinne Summerill, Zhongjun Hu, Hamidreza Rahmani, Dianne W Taylor, Kenneth A Taylor
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Abstract

The Z-disk of striated muscle defines the ends of the sarcomere, which repeats many times within the muscle fiber. Here we report application of cryoelectron tomography and subtomogram averaging to Z-disks isolated from the flight muscles of the large waterbug Lethocerus indicus. We use high salt solutions to remove the myosin containing filaments and use gelsolin to remove the actin filaments of the A- and I-bands leaving only the thin filaments within the Z-disk which were then frozen for cryoelectron microscopy. The Lethocerus Z-disk structure is similar in many ways to the previously studied Z-disk of the honeybee Apis mellifera. At the corners of the unit cell are positioned trimers of paired antiparallel F-actins defining a large solvent channel, whereas at the trigonal positions are positioned F-actin trimers converging slowly towards their (+) ends defining a small solvent channel through the Z-disk. These near parallel F-actins terminate at different Z-heights within the Z-disk. The two types of solvent channel in Lethocerus are similar in size compared to those of Apis which are very different in size. Two types of α-actinin crosslinks were observed between oppositely oriented actin filaments. In one of these, the α-actinin long axis is almost parallel to the F-actins it crosslinks. In the other, the α-actinins are at a small but distinctive angle with respect to the crosslinked actin filaments. The utility of isolated Z-disks for structure determination is discussed.

Abstract Image

分离的印度小尾丝虫Z盘的冷冻电镜三维图像重建。
横纹肌的Z盘定义了肌节的末端,肌节在肌纤维内重复多次。在这里,我们报道了冷冻电子断层扫描和亚断层图平均法在从大型水蝽Lethocerus indicus的飞行肌肉中分离的Z盘上的应用。我们使用高盐溶液去除含有肌球蛋白的细丝,并使用凝胶蛋白去除A-和I-带的肌动蛋白细丝,只在Z-盘中留下细丝,然后冷冻用于冷冻电子显微镜。Lethocerus的Z盘结构在许多方面与之前研究的蜜蜂Apis mellifera的Z盘相似。在晶胞的角落处定位成对反平行F-肌动蛋白的三聚体,其限定大溶剂通道,而在三角位置处定位F-肌动蛋白三聚体,所述三聚体朝向其(+)端缓慢会聚,限定穿过Z-盘的小溶剂通道。这些接近平行的F-肌动蛋白终止于Z-盘中不同的Z-高度。与大小非常不同的Apis相比,Lethocerus中的两种溶剂通道的大小相似。在相反取向的肌动蛋白丝之间观察到两种类型的α-肌动蛋白交联。在其中一种情况下,α-肌动蛋白长轴几乎平行于其交联的F-肌动蛋白。在另一种情况下,α-肌动蛋白相对于交联的肌动蛋白丝处于一个小但独特的角度。讨论了孤立Z盘在结构确定中的应用。
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: The Journal of Muscle Research and Cell Motility has as its main aim the publication of original research which bears on either the excitation and contraction of muscle, the analysis of any one of the processes involved therein, the processes underlying contractility and motility of animal and plant cells, the toxicology and pharmacology related to contractility, or the formation, dynamics and turnover of contractile structures in muscle and non-muscle cells. Studies describing the impact of pathogenic mutations in genes encoding components of contractile structures in humans or animals are welcome, provided they offer mechanistic insight into the disease process or the underlying gene function. The policy of the Journal is to encourage any form of novel practical study whatever its specialist interest, as long as it falls within this broad field. Theoretical essays are welcome provided that they are concise and suggest practical ways in which they may be tested. Manuscripts reporting new mutations in known disease genes without validation and mechanistic insight will not be considered. It is the policy of the journal that cells lines, hybridomas and DNA clones should be made available by the developers to any qualified investigator. Submission of a manuscript for publication constitutes an agreement of the authors to abide by this principle.
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