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小鼠精子发生过程中,连接微管与核膜以及观察微管在细胞核塑形中的作用

Linkage of manchette microtubules to the nuclear envelope and observations of the role of the manchette in nuclear shaping during spermiogenesis in rodents.

作者信息

Russell L D, Russell J A, MacGregor G R, Meistrich M L

机构信息

Department of Physiology, School of Medicine, Southern Illinois University, Carbondale 62901.

出版信息

Am J Anat. 1991 Oct;192(2):97-120. doi: 10.1002/aja.1001920202.

Abstract

Structural features of the mouse and rat manchette and the role of the manchette in shaping the spermatid nucleus were investigated. Rod-like elements about 10 nm in diameter and 40-70 nm in length were seen linking the innermost microtubules of the manchette and the outer leaflet of the nuclear envelope in step 8 through step 11 rat and mouse spermatids that either had been routinely fixed for electron microscopy or had been isolated and detergent extracted. Rod-like linkers were also seen joining the nuclear ring to the plasma membrane and nuclear envelope. These linkers may ensure that under normal conditions the manchette remains in a defined position relative to these membranous components. A variety of compounds (taxol, cytoxan, and 5-fluorouracil) were found to perturb the manchette and to affect nuclear shaping. In addition, sys and azh mutant mice were used to determine the consequences of defective manchette formation. These genetic conditions and chemical treatments either produced manchettes that were not in their normal position (azh, sys, and taxol) and/or caused the manchette to appear abnormal (azh, sys, cytoxan, 5-fluorouracil, and taxol), and all resulted in a deformation of the step 9-11 spermatid nucleus. In all instances where the manchette was present, either in normal or ectopic locations, the sectioned nuclear envelope was parallel to the long axis of the microtubules of the manchette. In general, areas of the nuclear envelope where the manchette was not present, or where it was expected to be present but was not, were rounded (normal animals, sys, cytoxan). In addition, there are indications using certain compounds (cytoxan and 5-fluorouracil) as well as in the azh and sys mouse that the manchette may exert pressure to deform the nucleus. It is suggested that the rod-like linkages of the manchette ensure that the nuclear envelope remains at a constant distance from the manchette microtubules and that this is a major factor acting to impart nuclear shape changes on a region of the head caudal to the acrosome during the early elongation phase of spermiogenesis. The manchette microtubules, which are also known to be linked together, may act as a scaffold to deform this part of the nucleus from its spherical shape, perhaps in concert with forces initiated by other structural elements. Evidence from sys animals indicates that structural elements, such as the acrosomal complex over the anterior head (acrosome-actin-nuclear envelope), may affect nuclear shaping over the acrosome-covered portion of the spermatid head.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

研究了小鼠和大鼠的线粒体鞘的结构特征以及线粒体鞘在精子细胞核塑形中的作用。在常规固定用于电子显微镜观察或已分离并用去污剂提取的第8至11步大鼠和小鼠精子细胞中,可见直径约10 nm、长度为40 - 70 nm的杆状元件连接着线粒体鞘的最内层微管和核膜的外小叶。还可见杆状连接物将核环与质膜和核膜相连。这些连接物可确保在正常条件下,线粒体鞘相对于这些膜性成分保持在特定位置。发现多种化合物(紫杉醇、环磷酰胺和5 - 氟尿嘧啶)会扰乱线粒体鞘并影响细胞核塑形。此外,利用sys和azh突变小鼠来确定线粒体鞘形成缺陷的后果。这些遗传条件和化学处理要么产生不在正常位置的线粒体鞘(azh、sys和紫杉醇)和/或导致线粒体鞘外观异常(azh、sys、环磷酰胺、5 - 氟尿嘧啶和紫杉醇),并且都导致第9至11步精子细胞核变形。在所有存在线粒体鞘的情况下,无论其处于正常位置还是异位,切片的核膜都与线粒体鞘微管的长轴平行。一般来说,不存在线粒体鞘或预期存在但未存在线粒体鞘的核膜区域呈圆形(正常动物、sys、环磷酰胺)。此外,有迹象表明,使用某些化合物(环磷酰胺和5 - 氟尿嘧啶)以及在azh和sys小鼠中,线粒体鞘可能施加压力使细胞核变形。有人提出,线粒体鞘的杆状连接确保核膜与线粒体鞘微管保持恒定距离,并且这是在精子发生早期伸长阶段对顶体尾侧头部区域赋予细胞核形状变化的一个主要因素。已知也相互连接的线粒体鞘微管可能作为一个支架,使细胞核的这一部分从球形变形,也许与其他结构元件引发的力协同作用。来自sys动物的证据表明,诸如头部前部的顶体复合体(顶体 - 肌动蛋白 - 核膜)等结构元件可能影响精子细胞头部顶体覆盖部分的细胞核塑形。(摘要截取自400字)

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