首页> 美国卫生研究院文献>American Journal of Human Genetics >Different patterns of X inactivation in MZ twins discordant for red-green color-vision deficiency.
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Different patterns of X inactivation in MZ twins discordant for red-green color-vision deficiency.

机译:MZ双胞胎中X灭活的不同模式与红绿色视力缺陷不一致。

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摘要

Two female identical twins who were clinically normal were obligatory heterozygotes for X-linked deuteranomaly associated with a green-red fusion gene derived from their deuteranomalous father. On anomaloscopy, one of the twins was phenotypically deuteranomalous while the other had normal color vision. The color vision-defective twin had two sons with normal color vision and one deuteranomalous son. X-inactivation analysis was done with the highly informative probe M27 beta. This probe detects a locus (DXS255) which contains a VNTR and which is somewhat differentially methylated on the active and inactive X chromosomes. In skin cells of the color vision-defective twin, almost all paternal X chromosomes with the abnormal color-vision genes were active, thereby explaining her color-vision defect. In contrast, a different pattern was observed in skin cells from the woman with normal color vision; her maternal X chromosome was mostly active. However, in blood lymphocytes, both twins showed identical patterns with mixtures of inactivated maternal and paternal X chromosomes. Deuteranomaly in one of the twins is explained by extremely skewed X inactivation, as shown in skin cells. Failure to find this skewed pattern in blood cells is explained by the sharing of fetal circulation and exchange of hematopoietic precursor cells between twins. These data give evidence for X inactivation of the color-vision locus and add another MZ twin pair with markedly different X-inactivation patterns for X-linked traits.
机译:两名临床上正常的雌性同卵双胞胎是X连锁的子宫异位症的强制性杂合子,与来自其氘代异常父亲的绿红色融合基因相关。在肛门镜检查下,其中一对双胞胎在表型上是氘异常的,而另一对则具有正常的色觉。有色觉缺陷的双胞胎有两个儿子,他们的色觉正常,一个氘代儿子。 X灭活分析是使用高度信息化的探针M27 beta进行的。该探针检测到一个位点(DXS255),该位点包含一个VNTR,并且在活跃的X染色体和非活跃的X染色体上甲基化程度有所不同。在有色觉缺陷的双胞胎的皮肤细胞中,几乎所有具有异常色觉基因的父亲X染色体都活跃,从而解释了她的色觉缺陷。相反,与正常色觉的女性相比,在皮肤细胞中观察到了不同的模式。她的母亲X染色体大部分处于活动状态。但是,在血淋巴细胞中,两个双胞胎都表现出相同的模式,其中母本和父本X染色体灭活。如在皮肤细胞中所示,双胞胎之一的子宫申良异常是由极度偏斜的X失活引起的。胎儿循环的共享和双胞胎之间造血前体细胞的交换解释了未能在血细胞中找到这种偏斜的模式。这些数据为色视位点的X灭活提供了证据,并添加了另一对MZ双胞胎,其X连锁性状的X灭活模式明显不同。

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