首页> 外文期刊>Journal of Medical Genetics >Deletion of a 760 kb region at 4p16 determines the prenatal and postnatal growth retardation characteristic of Wolf-Hirschhorn syndrome.
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Deletion of a 760 kb region at 4p16 determines the prenatal and postnatal growth retardation characteristic of Wolf-Hirschhorn syndrome.

机译:在4p16处760 kb区域的缺失决定了Wolf-Hirschhorn综合征的产前和产后生长迟缓特征。

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摘要

BACKGROUND: Recently the genotype/phenotype map of Wolf-Hirschhorn syndrome (WHS) has been refined, using small 4p deletions covering or flanking the critical region in patients showing only some of the WHS malformations. Accordingly, prenatal-onset growth retardation and failure to thrive have been found to result from haploinsufficiency for a 4p gene located between 0.4 and 1.3 Mb, whereas microcephaly results from haploinsufficiency of at least two different 4p regions, one of 2.2-2.38 Mb and a second one of 1.9-1.28 Mb. METHODS AND RESULTS: We defined the deletion size of a ring chromosome (r(4)) in a girl with prenatal onset growth retardation, severe failure to thrive and true microcephaly but without the WHS facial gestalt and mental retardation. A high-resolution comparative genome hybridisation array revealed a 760 kb 4p terminal deletion. CONCLUSIONS: This case, together with a familial 4p deletion involving the distal 400 kb reported in normal women, may narrow the critical region for short stature on 4p to 360-760 kb. This region is also likely to contain a gene for microcephaly. "In silico" analysis of all genes within the critical region failed to reveal any strikingly suggestive expression pattern; all genes remain candidates for short stature and microcephaly.
机译:背景:最近,Wolf-Hirschhorn综合征(WHS)的基因型/表型图已经得到了完善,使用仅覆盖一些WHS畸形的患者的关键区域覆盖或侧翼的小4p缺失。因此,已经发现,位于0.4和1.3 Mb之间的4p基因的单倍体功能不足导致了产前发作的发育迟缓和无法存活,而小头畸形是由至少两个不同的4p区域的单倍体功能不足导致的,其中一个为2.2-2.38 Mb,另一个为4a。 1.9-1.28 Mb中的第二个。方法和结果:我们定义了一个女孩的环状染色体(r(4))的缺失大小,该女孩患有产前发作发育迟缓,无法正常成长和真正的小头畸形,但是没有WHS面部畸形和智力障碍。高分辨率比较基因组杂交阵列显示760 kb 4p末端缺失。结论:此病例,加上正常女性中报告的涉及远端400 kb的家族性4p缺失,可能会将4p短身的关键区域缩小到360-760 kb。该区域也可能包含小头畸形基因。对关键区域内所有基因的“计算机模拟”分析未能揭示任何令人惊讶的暗示性表达模式。所有基因仍然是矮小和小头畸形的候选者。

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