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首页> 外文期刊>Pharmacogenomics >Differential sensitivity of mouse strains to an N-alkylated imino sugar: glycosphingolipid metabolism and acrosome formation.
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Differential sensitivity of mouse strains to an N-alkylated imino sugar: glycosphingolipid metabolism and acrosome formation.

机译:小鼠品系对N-烷基化亚氨基糖的敏感性不同:糖鞘脂代谢和顶体形成。

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摘要

This review deals with the pharmacological properties of an alkylated monosaccharide mimetic, N-butyldeoxynojirimycin (NB-DNJ). This compound is of pharmacogenetic interest because one of its biological effects in mice - impairment of spermatogenesis, leading to male infertility - depends greatly on the genetic background of the animal. In susceptible mice, administration of NB-DNJ perturbs the formation of an organelle, the acrosome, in early post-meiotic male germ cells. In all recipient mice, irrespective of reproductive phenotype, NB-DNJ has a similar biochemical effect: inhibition of the glucosylceramidase beta-glucosidase 2 and subsequent elevation of glucosylceramide, a glycosphingolipid. The questions that we now need to address are: how can glucosylceramide specifically affect early acrosome formation, and why is this contingent on genetic factors? Here we discuss relevant aspects of reproductive biology, the metabolism and cell biology of sphingolipids, and complex trait analysis; we also present a speculative model that takes our observations into account.
机译:这项审查涉及烷基化的单糖模拟物,N-丁基脱氧野oji霉素(NB-DNJ)的药理特性。该化合物具有药物遗传学意义,因为它对小鼠的生物学作用之一-精子发生的损害,导致雄性不育-在很大程度上取决于动物的遗传背景。在易感小鼠中,施用NB-DNJ会扰乱减数分裂后早期雄性生殖细胞中细胞器顶体的形成。在所有受体小鼠中,无论生殖表型如何,NB-DNJ都具有类似的生化作用:抑制糖基神经酰胺酶β-糖苷酶2并随后升高糖鞘脂(一种糖鞘脂)。我们现在需要解决的问题是:葡萄糖基神经酰胺如何特异性地影响顶体的早期形成,为什么这取决于遗传因素?在这里,我们讨论生殖生物学,鞘脂的代谢和细胞生物学以及复杂性状分析的相关方面;我们还提出了一个将我们的观察考虑在内的投机模型。

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