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人类细菌人工染色体文库:构建与快速筛选

Human BAC library: construction and rapid screening.

作者信息

Asakawa S, Abe I, Kudoh Y, Kishi N, Wang Y, Kubota R, Kudoh J, Kawasaki K, Minoshima S, Shimizu N

机构信息

Department of Molecular Biology, Keio University School of Medicine, Shinjuku-ku, Tokyo, Japan.

出版信息

Gene. 1997 May 20;191(1):69-79. doi: 10.1016/s0378-1119(97)00044-9.

Abstract

We have constructed a human genomic bacterial artificial chromosome (BAC) library using high molecular weight DNA from a pre-pro-B cell line, FLEB14-14, with a normal male diploid karyotype. This BAC library consists of 96,000 clones with an average DNA insert size of 110 kb, covering the human genome approximately 3 times. The library can be screened by three different methods. (1) Probe hybridization to 31 high-density replica (HDR) filters: each filter contains 3072 BAC clones which were gridded in a 6 x 6 pattern. (2) Probe hybridization to two Southern blot filters to which 31 HindIII digests of the pooled 3072 BAC clones were loaded. This identifies a particular HDR filter for which further probe hybridization is performed to identify a particular clone(s). (3) Two-step polymerase chain reaction (PCR). First, PCR is applied to DNA samples prepared from ten superpools of 9600 BAC clones each to identify a particular superpool and the second PCR is applied to 40 unique DNA samples prepared from the four-dimensionally assigned BAC clones of the particular superpool. We present typical examples of the library screening using these three methods. The two-step PCR screening is particularly powerful since it allows us to isolate a desired BAC clone(s) within a day or so. The theoretical consideration of the advantage of this method is presented. Furthermore, we have adapted Vectorette method to our BAC library for the isolation of terminal sequences of the BAC DNA insert to facilitate contig formation by BAC walking.

摘要

我们使用来自具有正常男性二倍体核型的前B前体细胞系FLEB14 - 14的高分子量DNA构建了一个人类基因组细菌人工染色体(BAC)文库。该BAC文库由96,000个克隆组成,平均DNA插入片段大小为110 kb,大约覆盖人类基因组3倍。该文库可以通过三种不同方法进行筛选。(1)与31个高密度复制(HDR)滤膜进行探针杂交:每个滤膜包含3072个BAC克隆,这些克隆以6×6的模式网格化。(2)与两个Southern杂交滤膜进行探针杂交,向其中加载了3072个BAC克隆混合池的31个HindIII酶切产物。这可以确定一个特定的HDR滤膜,然后对其进行进一步的探针杂交以鉴定特定的克隆。(3)两步聚合酶链反应(PCR)。首先,将PCR应用于从每组9600个BAC克隆的十个超级混合池中制备的DNA样本,以鉴定特定的超级混合池,然后将第二次PCR应用于从特定超级混合池的四维分配BAC克隆中制备的40个独特DNA样本。我们展示了使用这三种方法进行文库筛选的典型示例。两步PCR筛选特别强大,因为它使我们能够在一天左右的时间内分离出所需的BAC克隆。本文还介绍了该方法优势的理论考量。此外,我们已将Vectorette方法应用于我们的BAC文库,以分离BAC DNA插入片段的末端序列,便于通过BAC步移形成重叠群。

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