果蝇Neprilysin 4基因对精子转移到雌性后的精子功能至关重要。

IF 1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Genes & genetic systems Pub Date : 2021-12-16 Epub Date: 2021-09-24 DOI:10.1266/ggs.21-00024
Takashi Ohsako, Machi Shirakami, Kazuharu Oiwa, Kimihide Ibaraki, Timothy L Karr, Masatoshi Tomaru, Rikako Sanuki, Toshiyuki Takano-Shimizu-Kouno
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引用次数: 2

摘要

精子在通过雄性和雌性生殖道的过程中都发生了很大的变化,只有在此之后才具有使卵子受精的功能。果蝇的精子在精囊中活动;射精后,它们与精液蛋白相互作用,并在其表面发生生化变化,同时它们被储存在女性精子储存器官中。然而,这些成熟过程的分子机制在很大程度上仍然未知。在这里,我们重点研究了果蝇Neprilysin基因,这些基因是小鼠膜金属内肽酶样1 (Mmel1)基因的果蝇同源基因。虽然Mmel1基因敲除雄性小鼠的生育能力降低,但睾丸形态和精子活力均未发生异常,但在果蝇中,关于Neprilysin基因与雄性生育能力的关系,结果并不一致。我们通过RNAi检测了Nep1-5基因与雄性生殖能力的关系,发现nep1 - 4基因的功能在种系细胞中是特别需要的。为了更详细地研究这一点,我们通过CRISPR/Cas9系统诱导了Nep4基因的突变,并分离了两个突变体,这两个突变体都是活的,雌性可生育,但雄性不育。突变的雄性有正常的睾丸和精子;在交配过程中,精子被转移到雌性体内,储存在精囊和成对的精囊中。然而,在精子移植和储存后,发现了三个缺陷。首先,精子很快被雌性丢弃;其次,突变精子受精卵比例显著低于对照精子;第三,大多数卵子在精子进入后并没有开始发育。综合这些观察结果,我们得出结论,在精子转移到雌性后,Nep4基因对精子功能至关重要。
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The Drosophila Neprilysin 4 gene is essential for sperm function following sperm transfer to females.

Sperm are modified substantially in passing through both the male and the female reproductive tracts, only thereafter becoming functionally competent to fertilize eggs. Drosophila sperm become motile in the seminal vesicle; after ejaculation, they interact with seminal fluid proteins and undergo biochemical changes on their surface while they are stored in the female sperm storage organs. However, the molecular mechanisms underlying these maturation processes remain largely unknown. Here, we focused on Drosophila Neprilysin genes, which are the fly orthologs of the mouse Membrane metallo-endopeptidase-like 1 (Mmel1) gene. While Mmel1 knockout male mice have reduced fertility without abnormality in either testis morphology or sperm motility, there are inconsistent results regarding the association of any Neprilysin gene with male fertility in Drosophila. We examined the association of the Nep1-5 genes with male fertility by RNAi and found that Nep4 gene function is specifically required in germline cells. To investigate this in more detail, we induced mutations in the Nep4 gene by the CRISPR/Cas9 system and isolated two mutants, both of which were viable and female fertile, but male sterile. The mutant males had normal-looking testes and sperm; during copulation, sperm were transferred to females and stored in the seminal receptacle and paired spermathecae. However, following sperm transfer and storage, three defects were observed for Nep4 mutant sperm. First, sperm were quickly discarded by the females; second, the proportion of eggs fertilized was significantly lower for mutant sperm than for control sperm; and third, most eggs laid did not initiate development after sperm entry. Taking these observations together, we conclude that the Nep4 gene is essential for sperm function following sperm transfer to females.

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来源期刊
Genes & genetic systems
Genes & genetic systems 生物-生化与分子生物学
CiteScore
1.50
自引率
0.00%
发文量
22
审稿时长
>12 weeks
期刊介绍: Genes & Genetic Systems , formerly the Japanese Journal of Genetics , is published bimonthly by the Genetics Society of Japan.
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