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首页> 外文期刊>Developmental biology >BIOGENESIS OF THE POSTERIOR-TAIL PLASMA MEMBRANE DOMAIN OF THE MAMMALIAN SPERMATOZOON - TARGETING AND LATERAL REDISTRIBUTION OF THE POSTERIOR-TAIL DOMAIN-SPECIFIC TRANSMEMBRANE PROTEIN CE9 DURING SPERMIOGENESIS
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BIOGENESIS OF THE POSTERIOR-TAIL PLASMA MEMBRANE DOMAIN OF THE MAMMALIAN SPERMATOZOON - TARGETING AND LATERAL REDISTRIBUTION OF THE POSTERIOR-TAIL DOMAIN-SPECIFIC TRANSMEMBRANE PROTEIN CE9 DURING SPERMIOGENESIS

机译:哺乳动物精子后尾浆膜域的生物发生-精子成生过程中后尾域特异跨膜蛋白CE9的定位和侧向分布

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摘要

We used immunoperoxidase histochemistry and confocal immunofluorescence microscopy to examine the events involved in the compartmentalization of CE9 to the posteriortail plasma membrane domain during spermatogenesis in the rat. We identified two major episodes of spermatogenesis during which CE9 appeared to accumulate in relatively large amounts intracellularly within elements of the secretory pathway. The first episode encompassed cells from preleptotene through early pachytene primary spermatocytes and was evident as intense intracellular labeling of the endoplasmic reticulum and the Golgi complex. The second episode encompassed spermatids in steps 8-12 of spermiogenesis and was evident as intense intracellular labeling of the Golgi complex and smaller vesicular structures observed within the cytoplasm of the spermatid. Between these two episodes, CE9 was detected in considerably reduced amounts. Although present within the Golgi complex and the acrosomic system throughout much of the first half of spermiogenesis, CE9 was not detected on the tail of the spermatid until steps 8-9 of spermiogenesis. Although detected initially in relatively small amounts along the entire length of the tail beginning at steps 8-9, there was no evidence for the presence of relatively large amounts of CE9 on the tail or anywhere else on the surface of the spermatid until after step 11 of spermiogenesis. Between step 11 and steps 13-14 of spermiogenesis, CE9 was observed to accumulate in relatively large amounts on the whole tail coincident with its apparent loss from the Golgi complex, CE9 was observed to then undergo further compartmentalization to the posterior-tail domain sometime between steps 13-14 of spermiogenesis and spermiation. Our results suggest that CE9 is synthesized and enters the secretory pathway throughout much of spermatogenesis, but that the site of accumulation of CE9 varies considerably as a function of development. With respect to the biogenesis of the posterior-tail plasma membrane domain, our results suggest that CE9 is targeted from the Golgi complex to the plasma membrane of the whole tail during mid to late spermiogenesis and then redistributes laterally into the posterior-tail domain coincident with the caudal migration of the annulus late in spermiogenesis. This proposed pathway has a number of important implications for the logistical capabilities of the mammalian spermatid. (C) 1995 Academic Press, Inc. [References: 53]
机译:我们使用免疫过氧化物酶组织化学和共聚焦免疫荧光显微镜检查在大鼠精子发生过程中涉及到CE9到后尾质膜区的区划的事件。我们确定了两个主要的精子发生过程,在此过程中,CE9似乎在分泌途径的各个元素内在细胞内大量积累。第一集包括从前瘦素到早期粗线期原代精母细胞的细胞,明显表现为内质网和高尔基体的强烈细胞内标记。第二个事件包括精子发生步骤8-12中的精子,并且明显地表现为高尔基复合体的强烈细胞内标记以及在精子细胞质内观察到的较小的囊泡结构。在这两个事件之间,检测到的CE9数量大大减少。尽管在精子发生的前半部分大部分时间都存在于高尔基复合体和肢端系统中,但直到精子发生的第8-9步才在精子的尾部检测到CE9。尽管最初从步骤8-9开始沿尾巴的整个长度以相对少量的量检测到,但直到第11步之后,才有证据表明尾巴或精子表面上其他任何地方都存在相对大量的CE9。精子发生。在精子发生的第11步和第13-14步之间,观察到CE9相对于从高尔基体中明显流失,在整个尾巴上积累相对较多,然后观察到CE9在随后的某个时间进一步分隔到后尾区域精子发生和精子形成的第13-14步。我们的结果表明,CE9是合成的,并在整个精子发生的大部分过程中都进入分泌途径,但是CE9的积累位点随发育而变化。关于后尾质膜结构域的生物发生,我们的结果表明,CE9在生精中期至晚期从高尔基复合体靶向到整个尾巴的质膜,然后横向重分布到与在精子发生后期环的尾部迁移。该拟议的途径对哺乳动物精子的后勤能力具有许多重要意义。 (C)1995 Academic Press,Inc. [参考:53]

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