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5-氮杂胞苷对携带 rob(1;29)的克里奥尔牛淋巴细胞中期的影响。

Effects of 5-azacytidine on lymphocyte-metaphases of Creole cows carrying the rob(1;29).

机构信息

Area Genética, Depto. de Genética y Mejora Animal, Facultad de Veterinaria (UDELAR), Av. A. Lasplaces 1550, CP 11600, Montevideo, Uruguay.

出版信息

Res Vet Sci. 2010 Apr;88(2):263-6. doi: 10.1016/j.rvsc.2009.10.004. Epub 2009 Nov 18.

Abstract

The Robertsonian translocation rob(1;29) is the most important chromosomal abnormality in cattle. It has been demonstrated that carriers of this chromosomal alteration exhibit reduced fertility due to an early embryonic loss. In the present study we analyzed the effects of DNA methylation inhibitor 5-azacytidine (5-aza-C) on metaphase lymphocytes from Uruguayan Creole cows carrying the rob(1;29). The analysis was focused on the chromatin structure of rob(1;29) comparing it to active and inactive BTAX chromosomes. Lymphocyte cultures were treated with 5-aza-C (1 x 10(-3)M) for 2 h to analyze regions of chromatin decondensation. A comparative analysis of chromatin decondensation among rob(1;29), active BTAX and inactive BTAX showed significant differences (p=1.07 x 10(-7)). Post-hoc pair-wise comparisons using the Mann-Whitney U-test showed significant differences between rob(1;29) and active BTAX (p=1.97 x 10(-5)) and between the active BTAX and inactive BTAX (p=2.55 x 10(-7)). Nevertheless, rob(1;29) did not show significant differences when compared to inactive BTAX (p=0.078). Robertsonian translocation rob(1;29) showed a despiralization pattern similar to the inactive X chromosome. Pericentromeric despiralization in rob(1;29) and the inactive X chromosome was similar, with an average value and standard error of 0.75+/-0.11 and 0.75+/-0.083, respectively. A single condensed region was observed in the inactive X chromosome, whereas in rob(1;29) two regions of condensation, one proximal to the centromere and another proximal to the telomere were detected. Our results show that rob(1;29) and the inactive X chromosome present instability regions susceptible to 5-aza-C. Further studies will be needed to understand the nature and expression pattern of genes located in chromatin condensed regions of rob(1;29).

摘要

罗伯逊易位 rob(1;29) 是牛中最重要的染色体异常。已经证明,这种染色体改变的携带者由于早期胚胎丢失而表现出生育力降低。在本研究中,我们分析了 DNA 甲基化抑制剂 5-氮杂胞苷(5-aza-C)对携带 rob(1;29) 的乌拉圭克里奥尔牛中期淋巴细胞的影响。分析集中在比较 rob(1;29) 的染色质结构与活性和非活性 BTAX 染色体。用 5-aza-C(1x10(-3)M)处理淋巴细胞培养物 2 小时以分析染色质去浓缩区域。对 rob(1;29)、活性 BTAX 和非活性 BTAX 之间的染色质去浓缩进行比较分析显示出显著差异(p=1.07x10(-7))。使用曼-惠特尼 U 检验进行事后两两比较显示,rob(1;29)与活性 BTAX 之间存在显著差异(p=1.97x10(-5)),以及活性 BTAX 与非活性 BTAX 之间存在显著差异(p=2.55x10(-7))。然而,rob(1;29)与非活性 BTAX 之间没有显著差异(p=0.078)。罗伯逊易位 rob(1;29)显示出类似于失活 X 染色体的去螺旋化模式。rob(1;29)和失活 X 染色体的着丝粒周围去螺旋化相似,平均值和标准误差分别为 0.75+/-0.11 和 0.75+/-0.083。在失活 X 染色体中观察到单个浓缩区域,而在 rob(1;29)中检测到两个浓缩区域,一个靠近着丝粒,另一个靠近端粒。我们的结果表明,rob(1;29)和失活 X 染色体存在易受 5-aza-C 影响的不稳定区域。需要进一步的研究来了解位于 rob(1;29)染色质浓缩区域的基因的性质和表达模式。

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