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A haplolethal locus uncovered by deletions in the mouse T complex.

机译:通过在小鼠T复合物中缺失发现的单倍体基因座。

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摘要

Proper levels of gene expression are important for normal mammalian development. Typically, altered gene dosage caused by karyotypic abnormalities results in embryonic lethality or birth defects. Segmental aneuploidy can be compatible with life but often results in contiguous gene syndromes. The ability to manipulate the mouse genome allows the systematic exploration of regions that are affected by alterations in gene dosage. To explore the effects of segmental haploidy in the mouse t complex on chromosome 17, radiation-induced deletion complexes centered at the Sod2 and D17Leh94 loci were generated in embryonic stem (ES) cells. A small interval was identified that, when hemizygous, caused specific embryonic lethal phenotypes (exencephaly and edema) in most fetuses. The penetrance of these phenotypes was background dependent. Additionally, evidence for parent-of-origin effects was observed. This genetic approach should be useful for identifying genes that are imprinted or whose dosage is critical for normal embryonic development.
机译:适当的基因表达水平对于正常的哺乳动物发育很重要。通常,由核型异常引起的基因剂量改变会导致胚胎致死或出生缺陷。节段非整倍性可以与生活相容,但通常会导致连续的基因综合征。操纵小鼠基因组的能力允许系统探索受基因剂量改变影响的区域。为了探索小鼠t复合物中分段单倍体对17号染色​​体的影响,在胚胎干(ES)细胞中产生了以Sod2和D17Leh94位点为中心的辐射诱导的缺失复合物。在半合子时,发现有一个很小的时间间隔,在大多数胎儿中会引起特定的胚胎致死表型(无力和水肿)。这些表型的外显率是背景依赖性的。另外,观察到有母本效应的证据。这种遗传方法应可用于识别已印迹或其剂量对于正常胚胎发育至关重要的基因。

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