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与纤毛双联体微管相连的结构:薄切片和负染立体图像的计算机建模

Structures attached to doublet microtubules of cilia: computer modeling of thin-section and negative-stain stereo images.

作者信息

Avolio J, Glazzard A N, Holwill M E, Satir P

出版信息

Proc Natl Acad Sci U S A. 1986 Jul;83(13):4804-8. doi: 10.1073/pnas.83.13.4804.

Abstract

With a single set of positional coordinates for longitudinal and transverse attachment of the inner and outer rows of dynein arms with respect to the doublet microtubules of Tetrahymena ciliary axonemes, a computer model has been constructed at 4-nm resolution that reconciles negative-stain en face stereo images of arm and spoke positions to traditional images of tannic acid/glutaraldehyde-fixed sections. In this model, inner and outer arms correspond in substructure; both repeat with a 24-nm periodicity without stagger between rows, and a pair of arms is in exact alignment with the first spoke (S1) in each doublet spoke group. The model and the supporting micrographs suggest that each arm cycles in three dimensions and that, during cycling, the inner and outer arms move in opposite directions with respect to the center of subfiber A of the doublet (N). Attachment is off-center with respect to subfiber B of the adjacent doublet (N + 1), causing the sliding doublets to skew with respect to one another.

摘要

利用关于四膜虫纤毛轴丝双联体微管的动力蛋白臂内外排纵向和横向附着的一组位置坐标,构建了一个分辨率为4纳米的计算机模型,该模型将臂和辐位置的负染正面立体图像与单宁酸/戊二醛固定切片的传统图像进行了协调。在这个模型中,内臂和外臂在亚结构上相对应;两者都以24纳米的周期重复,行与行之间没有交错,并且一对臂与每个双联体辐组中的第一根辐(S1)精确对齐。该模型和辅助显微照片表明,每个臂在三维空间中循环,并且在循环过程中,内臂和外臂相对于双联体亚纤维A的中心(N)向相反方向移动。附着相对于相邻双联体(N + 1)的亚纤维B偏心,导致滑动双联体相互倾斜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01c8/323830/05aaa9873fc1/pnas00317-0232-a.jpg

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