A parental requirement for dual-specificity phosphatase 6 in zebrafish.

Q2 Biochemistry, Genetics and Molecular Biology BMC Developmental Biology Pub Date : 2018-03-15 DOI:10.1186/s12861-018-0164-6
Jennifer M Maurer, Charles G Sagerström
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引用次数: 7

Abstract

Background: Signaling cascades, such as the extracellular signal-regulated kinase (ERK) pathway, play vital roles in early vertebrate development. Signals through these pathways are initiated by a growth factor or hormone, are transduced through a kinase cascade, and result in the expression of specific downstream genes that promote cellular proliferation, growth, or differentiation. Tight regulation of these signals is provided by positive or negative modulators at varying levels in the pathway, and is required for proper development and function. Two members of the dual-specificity phosphatase (Dusp) family, dusp6 and dusp2, are believed to be negative regulators of the ERK pathway and are expressed in both embryonic and adult zebrafish, but their specific roles in embryogenesis remain to be fully understood.

Results: Using CRISPR/Cas9 genome editing technology, we generated zebrafish lines harboring germ line deletions in dusp6 and dusp2. We do not detect any overt defects in dusp2 mutants, but we find that approximately 50% of offspring from homozygous dusp6 mutants do not proceed through embryonic development. These embryos are fertilized, but are unable to proceed past the first zygotic mitosis and stall at the 1-cell stage for several hours before dying by 10 h post fertilization. We demonstrate that dusp6 is expressed in gonads of both male and female zebrafish, suggesting that loss of dusp6 causes defects in germ cell production. Notably, the 50% of homozygous dusp6 mutants that complete the first cell division appear to progress through embryogenesis normally and give rise to fertile adults.

Conclusions: The fact that offspring of homozygous dusp6 mutants stall prior to activation of the zygotic genome, suggests that loss of dusp6 affects gametogenesis and/or parentally-directed early development. Further, since only approximately 50% of homozygous dusp6 mutants are affected, we postulate that ERK signaling is tightly regulated and that dusp6 is required to keep ERK signaling within a range that is permissive for proper embryogenesis. Lastly, since dusp6 is expressed throughout zebrafish embryogenesis, but dusp6 mutants do not exhibit defects after the first cell division, it is possible that other regulators of the ERK pathway compensate for loss of dusp6 at later stages.

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斑马鱼对双特异性磷酸酶6的亲代需求。
背景:信号级联,如细胞外信号调节激酶(ERK)途径,在早期脊椎动物发育中起着至关重要的作用。通过这些途径的信号由生长因子或激素启动,通过激酶级联转导,并导致促进细胞增殖、生长或分化的特定下游基因的表达。这些信号的严格调节是由通路中不同水平的正调制器或负调制器提供的,是正常发育和功能所必需的。双特异性磷酸酶(Dusp)家族的两个成员dusp6和dusp2被认为是ERK通路的负调控因子,在胚胎和成年斑马鱼中均有表达,但它们在胚胎发生中的具体作用仍有待充分了解。结果:利用CRISPR/Cas9基因组编辑技术,我们生成了含有dusp6和dusp2生殖系缺失的斑马鱼品系。我们没有在dusp2突变体中发现任何明显的缺陷,但我们发现大约50%的纯合子dusp6突变体的后代不进行胚胎发育。这些胚胎已受精,但无法进行第一次合子有丝分裂,并在受精后10小时死亡之前在1细胞阶段停滞数小时。我们证明dusp6在雄性和雌性斑马鱼的性腺中都有表达,这表明dusp6的缺失会导致生殖细胞产生缺陷。值得注意的是,完成第一次细胞分裂的50%的纯合子dusp6突变体似乎在胚胎发生过程中正常进行,并产生可生育的成年体。结论:纯合子dusp6突变体的后代在合子基因组激活之前失速的事实表明,dusp6的缺失会影响配子发生和/或父母指导的早期发育。此外,由于只有大约50%的纯合子dusp6突变体受到影响,我们假设ERK信号受到严格调控,并且需要dusp6将ERK信号保持在允许正常胚胎发生的范围内。最后,由于dusp6在整个斑马鱼胚胎发育过程中都有表达,但dusp6突变体在第一次细胞分裂后不会表现出缺陷,因此ERK途径的其他调节因子可能会在后期补偿dusp6的缺失。
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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
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>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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