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与其他化学物质不同,依托泊苷(一种拓扑异构酶-II抑制剂)在小鼠初级精母细胞中产生最高的致突变性。

Unlike other chemicals, etoposide (a topoisomerase-II inhibitor) produces peak mutagenicity in primary spermatocytes of the mouse.

作者信息

Russell L B, Hunsicker P R, Johnson D K, Shelby M D

机构信息

Life Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831-8077, USA.

出版信息

Mutat Res. 1998 May 25;400(1-2):279-86. doi: 10.1016/s0027-5107(98)00036-0.

DOI:10.1016/s0027-5107(98)00036-0
PMID:9685680
Abstract

The cancer chemotherapy agent, and topoisomerase-II inhibitor, etoposide (VP-16) produced both recessive mutations at specific loci and dominants at other loci with peak frequencies in primary spermatocytes, a cell type in which the topo-II gene has been shown to be activated. Etoposide thus differs from all other chemicals whose germ-cell-stage specificity has been analyzed. No effects of etoposide exposure of spermatogonial stem cells ( approximately 15, 000 offspring scored) were detectable by either mutagenicity or productivity endpoints. The significant mutagenic response that followed exposure of poststem-cell stages ( approximately 25,000 offspring scored) showed a clear peak, with three of four specific-locus mutants, and three of four dominant mutants conceived during weeks 4 or 5 (days 22-35) post-injection, a period that also encompassed the dominant-lethal peak. For this period, the induced specific-locus rate (with 95% confidence limits) at a weighted-average exposure of 75.1 mg etop/kg was 59.5 (14.6, 170. 9)x10-6/locus. At least 3 of the 4 specific-locus mutations were deletions, paralleling findings with etoposide or analogs in other test systems where a recombinational origin of the deletions has been suggested. Because, unlike other chemicals that induce deletions in male germ cells, etoposide is effective in stages normally associated with recombinational events, it will be of interest to determine whether this chemical can affect meiotic recombination.

摘要

癌症化疗药物、拓扑异构酶-II抑制剂依托泊苷(VP-16)在特定基因座产生隐性突变,在其他基因座产生显性突变,在初级精母细胞中突变频率最高,而拓扑异构酶-II基因在这种细胞类型中已被证明是激活的。因此,依托泊苷不同于所有其他已分析其生殖细胞阶段特异性的化学物质。无论是通过致突变性还是生殖力终点,均未检测到依托泊苷对精原干细胞的影响(对约15,000个后代进行了评分)。干细胞后阶段暴露(对约25,000个后代进行了评分)后的显著致突变反应呈现出一个明显的峰值,在注射后第4周或第5周(第22 - 35天)受孕的四个特定基因座突变体中有三个,四个显性突变体中有三个,这一时期也包含显性致死峰值。在此期间,在加权平均暴露量为75.1 mg依托泊苷/千克时,诱导的特定基因座突变率(95%置信限)为59.5(14.6,170.9)×10⁻⁶/基因座。四个特定基因座突变中至少有三个是缺失,这与在其他测试系统中依托泊苷或其类似物的研究结果相似,在这些系统中已提出缺失的重组起源。由于与其他诱导雄性生殖细胞缺失的化学物质不同,依托泊苷在通常与重组事件相关的阶段是有效的,因此确定这种化学物质是否会影响减数分裂重组将是很有意义的。

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Unlike other chemicals, etoposide (a topoisomerase-II inhibitor) produces peak mutagenicity in primary spermatocytes of the mouse.与其他化学物质不同,依托泊苷(一种拓扑异构酶-II抑制剂)在小鼠初级精母细胞中产生最高的致突变性。
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Effect of the topoisomerase-II inhibitor etoposide on meiotic recombination in male mice.拓扑异构酶-II抑制剂依托泊苷对雄性小鼠减数分裂重组的影响。
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Comparison of the genetic effects of equimolar doses of ENU and MNU: while the chemicals differ dramatically in their mutagenicity in stem-cell spermatogonia, both elicit very high mutation rates in differentiating spermatogonia.等摩尔剂量的ENU和MNU遗传效应比较:尽管这两种化学物质在干细胞精原细胞中的致突变性差异显著,但它们在分化中的精原细胞中均引发非常高的突变率。
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Etoposide-induced cytogenotoxicity in mouse spermatogonia and its potential transmission.依托泊苷对小鼠精原细胞的细胞遗传毒性及其潜在传递
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Germ-cell mutagenicity of etoposide: induction of meiotic micronuclei in cultured rat seminiferous tubules.依托泊苷的生殖细胞致突变性:在培养的大鼠生精小管中诱导减数分裂微核
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Mutagenicity of anticancer drugs in mammalian germ cells.抗癌药物对哺乳动物生殖细胞的致突变性。
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Melphalan, a second chemical for which specific-locus mutation induction in the mouse is maximum in early spermatids.美法仑,第二种化学物质,其在小鼠中诱导特定位点突变的能力在早期精子细胞中最强。
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引用本文的文献

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Protective role of N-acetylcysteine (NAC) on human sperm exposed to etoposide.N-乙酰半胱氨酸(NAC)对暴露于依托泊苷的人类精子的保护作用。
Basic Clin Androl. 2019 Feb 7;29:3. doi: 10.1186/s12610-018-0082-2. eCollection 2019.
2
Base excision repair is limited by different proteins in male germ cell nuclear extracts prepared from young and old mice.碱基切除修复在从年轻和老年小鼠制备的雄性生殖细胞核提取物中受到不同蛋白质的限制。
Mol Cell Biol. 2002 Apr;22(7):2410-8. doi: 10.1128/MCB.22.7.2410-2418.2002.
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Etoposide induces heritable chromosomal aberrations and aneuploidy during male meiosis in the mouse.
依托泊苷在小鼠雄性减数分裂过程中诱导可遗传的染色体畸变和非整倍体。
Proc Natl Acad Sci U S A. 2001 Mar 27;98(7):3952-7. doi: 10.1073/pnas.061404598. Epub 2001 Mar 13.