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X射线诱导的小鼠15号染色体胚胎干细胞中的缺失复合体

X-ray-induced deletion complexes in embryonic stem cells on mouse chromosome 15.

作者信息

Chick Wallace S H, Mentzer Sarah E, Carpenter Donald A, Rinchik Eugene M, Johnson Dabney, You Yun

机构信息

Graduate School of Genome Sciences and Technology, The University of Tennessee, Knoxville, Tennessee 37996, USA.

出版信息

Mamm Genome. 2005 Sep;16(9):661-71. doi: 10.1007/s00335-005-0011-5. Epub 2005 Oct 20.

Abstract

Chromosomal deletions have long been used as genetic tools in dissecting the functions of complex genomes, and new methodologies are still being developed to achieve the maximum coverage. In the mouse, where the chromosomal deletion coverage is far less extensive than that in Drosophila, substantial coverage of the genome with deletions is strongly desirable. This article reports the generation of three deletion complexes in the distal part of mouse Chromosome (Chr) 15. Chromosomal deletions were efficiently induced by X rays in embryonic stem (ES) cells around the Otoconin 90 (Oc 90), SRY-box-containing gene 10 (Sox 10), and carnitine palmitoyltransferase 1b (Cpt 1 b) loci. Deletions encompassing the Oc 90 and Sox 10 loci were transmitted to the offspring of the chimeric mice that were generated from deletion-bearing ES cells. Whereas deletion complexes encompassing the Sox 10 and the Cpt 1 b loci overlap each other, no overlap of the Oc 90 complex with the Sox 10 complex was found, possibly indicating the existence of a haploinsufficient gene located between Oc 90 and Sox 10. Deletion frequency and size induced by X rays depend on the selective locus, possibly reflecting the existence of haplolethal genes in the vicinity of these loci that yield fewer and smaller deletions. Deletions induced in ES cells by X rays vary in size and location of breakpoints, which makes them desirable for mapping and for functional genomics studies.

摘要

染色体缺失长期以来一直被用作剖析复杂基因组功能的遗传工具,并且仍在开发新方法以实现最大覆盖范围。在小鼠中,其染色体缺失覆盖范围远不如果蝇广泛,因此非常需要大量的基因组缺失覆盖。本文报道了在小鼠15号染色体(Chr)远端产生的三个缺失复合体。在耳石素90(Oc 90)、含SRY盒基因10(Sox 10)和肉碱棕榈酰转移酶1b(Cpt 1 b)基因座周围的胚胎干细胞中,X射线有效地诱导了染色体缺失。包含Oc 90和Sox 10基因座的缺失被传递给了由携带缺失的胚胎干细胞产生的嵌合小鼠的后代。虽然包含Sox 10和Cpt 1 b基因座的缺失复合体相互重叠,但未发现Oc 90复合体与Sox 10复合体有重叠,这可能表明在Oc 90和Sox 10之间存在一个单倍体不足基因。X射线诱导的缺失频率和大小取决于选择的基因座,这可能反映了这些基因座附近存在单倍体致死基因,导致产生的缺失数量更少、大小更小。X射线在胚胎干细胞中诱导的缺失在断点的大小和位置上各不相同,这使得它们适用于图谱绘制和功能基因组学研究。

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