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大鼠附睾中基因表达的动态变化。

Dynamic changes in gene expression along the rat epididymis.

作者信息

Jervis K M, Robaire B

机构信息

Department of Pharmacology and Therapeutics, McGill University, 3655 Promenade Sir-William-Osler, Montréal, Québec, Canada H3G 1Y6.

出版信息

Biol Reprod. 2001 Sep;65(3):696-703. doi: 10.1095/biolreprod65.3.696.

Abstract

In the epididymis a series of complex, sequential events transform immature, spermatozoa into mature, motile sperm with fertilizing ability. These events are not intrinsic to germ cells but rather are a direct result of exposure to, and interaction with, the environment created by the epididymal epithelium. Regional differences along the epididymis are essential in the establishment of the environment required for sperm maturation. Although parts of this process have been identified, the molecular basis for the segment-specific differences and how they contribute to the process of sperm maturation, are not yet resolved. The identification of genes expressed in a region-specific manner will provide valuable insight into the functional differences between the regions. To characterize gene expression in the different regions of the epididymis, microarrays containing 1176 rat cDNAs were used to examine gene expression in the initial segment, caput, corpus, and cauda epididymidis of the adult Brown Norway rat. Overall, the cauda epididymidis expressed the most genes and the corpus epididymidis the fewest. A small percentage of genes (3%) were expressed highly (greater than fivefold the average expression on the array) along the tissue. Segment-specific gene expression for genes expressed at high levels was observed in all epididymal segments except the corpus epididymidis. Of the genes on the array, 36% were expressed in all four epididymal segments; expression changes that were a minimum of twofold in either direction between adjacent segments are discussed. The expression of cathepsins and oxidative stress-related genes was investigated. Six of the eight cathepsins on the array (B, C, E, H, L, and K) were expressed above twofold background and showed different levels of expression along the duct with cathepsin K showing the most dramatic change (i.e., a decrease of 87% between the initial segment and the corpus epididymidis). There was also differential expression along the epididymis of many genes associated with oxidative stress defenses. Using the power of expression array technology, we have identified novel transcripts expressed in a segment-specific manner and been able to assess how the expression of several selected gene families is modulated along the epididymis.

摘要

在附睾中,一系列复杂的连续事件将未成熟的精子转化为具有受精能力的成熟、可游动精子。这些事件并非生殖细胞所固有,而是直接暴露于附睾上皮所营造的环境并与之相互作用的结果。附睾各区域的差异对于建立精子成熟所需的环境至关重要。尽管该过程的部分环节已被确定,但节段特异性差异的分子基础以及它们如何促进精子成熟过程仍未得到解决。鉴定以区域特异性方式表达的基因将为深入了解各区域之间的功能差异提供有价值的线索。为了表征附睾不同区域的基因表达情况,使用了包含1176个大鼠cDNA的微阵列来检测成年棕色挪威大鼠附睾起始段、头部、体部和尾部的基因表达。总体而言,附睾尾部表达的基因最多,而附睾体部表达的基因最少。一小部分基因(3%)在整个组织中高表达(高于阵列上平均表达水平的五倍)。除附睾体部外,在所有附睾节段均观察到高水平表达基因的节段特异性基因表达。阵列上36%的基因在所有四个附睾节段中均有表达;讨论了相邻节段之间表达变化至少两倍的情况。对组织蛋白酶和氧化应激相关基因的表达进行了研究。阵列上的八个组织蛋白酶中有六个(B、C、E、H、L和K)表达高于两倍背景水平,并且沿管道显示出不同的表达水平,组织蛋白酶K的变化最为显著(即起始段和附睾体部之间下降了87%)。许多与氧化应激防御相关的基因在附睾中也存在差异表达。利用表达阵列技术的优势,我们鉴定了以节段特异性方式表达的新转录本,并能够评估几个选定基因家族的表达如何沿附睾进行调节。

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