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三种雄性生殖系特异性醛缩酶A同工酶通过可变剪接和逆转座产生。

Three male germline-specific aldolase A isozymes are generated by alternative splicing and retrotransposition.

作者信息

Vemuganti Soumya A, Bell Timothy A, Scarlett Cameron O, Parker Carol E, de Villena Fernando Pardo-Manuel, O'Brien Deborah A

机构信息

Laboratories for Reproductive Biology, University of North Carolina School of Medicine, Chapel Hill, NC 27599, USA.

出版信息

Dev Biol. 2007 Sep 1;309(1):18-31. doi: 10.1016/j.ydbio.2007.06.010. Epub 2007 Jun 18.

Abstract

Enzymes in the glycolytic pathway of mammalian sperm are modified extensively and are localized in the flagellum, where several are tightly bound to the fibrous sheath. This study provides the first evidence for three novel aldolase isozymes in mouse sperm, two encoded by Aldoart1 and Aldoart2 retrogenes on different chromosomes and another by Aldoa_v2, a splice variant of Aldoa. Phylogenetic analyses and comparative genomics indicate that the retrogenes and splice variant have remained functional and have been under positive selection for millions of years. Their expression is restricted to the male germline and is tightly regulated at both transcriptional and translational levels. All three isozymes are present only in spermatids and sperm and have distinctive features that may be important for localization in the flagellum and/or altered metabolic regulation. Both ALDOART1 and ALDOA_V2 have unusual N-terminal extensions not found in other aldolases. The N-terminal extension of ALDOA_V2 is highly conserved in mammals, suggesting a conserved function in sperm. We hypothesize that the N-terminal extensions are responsible for localizing components of the glycolytic pathway to the fibrous sheath and that this localization is required to provide sufficient ATP along the length of the flagellum to support sperm motility.

摘要

哺乳动物精子糖酵解途径中的酶会发生广泛修饰,并定位于鞭毛中,其中有几种酶与纤维鞘紧密结合。本研究首次证实了小鼠精子中存在三种新型醛缩酶同工酶,其中两种由位于不同染色体上的Aldoart1和Aldoart2反转录基因编码,另一种由Aldoa的剪接变体Aldoa_v2编码。系统发育分析和比较基因组学表明,这些反转录基因和剪接变体一直保持功能,并在数百万年里受到正选择。它们的表达仅限于雄性生殖系,在转录和翻译水平上都受到严格调控。所有这三种同工酶仅存在于精子细胞和精子中,具有独特特征,这可能对其在鞭毛中的定位和/或改变的代谢调节很重要。ALDOART1和ALDOA_V2都有其他醛缩酶中未发现的不寻常的N端延伸。ALDOA_V2的N端延伸在哺乳动物中高度保守,表明在精子中具有保守功能。我们推测,N端延伸负责将糖酵解途径的成分定位于纤维鞘,并且这种定位是沿着鞭毛长度提供足够的ATP以支持精子运动所必需的。

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