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Rapid generation of region-specific genomic clones by chromosome microdissection: Isolation of DNA from a region frequently deleted in malignant melanoma

机译:通过染色体显微切割快速生成区域特异性基因组克隆:从恶性黑素瘤中经常缺失的区域中分离DNa

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摘要

Malignant melanoma is frequently characterized by the deletion of the long arm of chromosome 6 (usually encompassing 6q16-q21). In an effort to saturate this region with DNA markers, microdissection and molecular cloning of DNA from banded human metaphases have been performed. This work was facilitated by the recent development of a novel chromosome microdissection scheme that omits microchemical manipulation of DNA. Microdissection was targeted on band 6q21. Direct PCR amplification of dissected DNA was first used as a probe in chromosomal in situ hybridization of normal metaphases to confirm the specificity of material excised for cloning. A genomic library of 20,000 clones, which is highly enriched for sequences encompassing 6q21, was then constructed. Clones from this library have been mapped against a human-rodent somatic cell hybrid mapping panel that divides chromosome 6 into seven regions, confirming the localization of probes within the target region. Direct PCR amplification of DNA excised by microdissection greatly simplifies and facilitates this chromosome band-specific cloning strategy. The isolation of microclones from this region of chromosome 6 should assist in establishing a physical map of the melanoma deletion region.
机译:恶性黑色素瘤通常以6号染色体的长臂缺失(通常包含6q16-q21)为特征。为了用DNA标记物使该区域饱和,已经进行了显微切割和从带状人中期提取DNA的分子克隆。这项工作是由于最近开发了一种新颖的染色体显微解剖方案而忽略了DNA的微量化学操作。显微解剖针对6q21带。首先将直接切割的DNA直接PCR扩增用作正常中期染色体原位杂交的探针,以确认被克隆的材料的特异性。然后构建了一个20,000个克隆的基因组文库,该文库高度丰富了包含6q21的序列。来自该文库的克隆已针对人类-啮齿类动物体细胞杂种作图小组进行了定位,该小组将第6号染色体分为七个区域,从而确认了探针在目标区域内的定位。通过显微解剖切除的DNA的直接PCR扩增极大地简化并促进了该染色体条带特异性克隆策略。从6号染色体这一区域分离微克隆应有助于建立黑素瘤缺失区域的物理图谱。

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