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酵母交配型基因在第三条染色体左臂的两次易位中的转位。

Transposition of yeast mating type genes from two translocations of the left arm of chromosome III.

作者信息

Haber J E, Rowe L, Rogers D T

出版信息

Mol Cell Biol. 1981 Dec;1(12):1106-19. doi: 10.1128/mcb.1.12.1106-1119.1981.

Abstract

In the yeast Saccharomyces cerevisiae, the HIS4C gene lies on the left arm of chromosome III. We analyzed two chromosomal rearrangements that have HIS4C translocated either to chromosome XII or to a new translocation chromosome. Using the cmt mutation that allows expression of the normally silent copies of mating type genes, we found that both of these translocations also carried HML alpha, more than 30 map units distal to HIS4C which normally lies on chromosome III. In the case of the translocation chromosome (designated T3), we also found an exchange event between HML alpha on the translocation chromosome and HMLa on chromosome III. In diploids containing two T3 chromosomes (one carrying HML alpha and the carrying HMLa), we found that HML was 32 centimorgans from HIS4C, which was 10 centimorgans from an unknown centromere. In homothallic strains carrying HMLa MATa HMRa on chromosome III, switching from MATa to MAT alpha could occur by using the HML alpha on the translocation as the sole donor of alpha information. Transposition from HML alpha on chromosome T3 was about 20 to 40% as efficient as transposition from intact chromosome III. In contrast, transposition from the HML alpha inserted into chromosome XII was reduced about 100-fold. This reduced efficiency did not appear to be caused by an alteration in the sequences immediately surrounding HML alpha in the translocation. The translocated HML alpha sequence was located in the same size (29-kilobase) SalI fragment as was found in chromosome III, and the same EcoRI, HindIII, and BglII restriction sites were also found. Furthermore, HML alpha was still under the control of the CMT gene, which maintains HML as a silent copy of mating type information. These results suggested that the position of the HML alpha sequence plays an important role in the efficiency of mating type switching.

摘要

在酿酒酵母中,HIS4C基因位于第三条染色体的左臂上。我们分析了两种染色体重排,它们将HIS4C基因易位到了第十二条染色体或一条新的易位染色体上。利用允许表达通常沉默的交配型基因拷贝的cmt突变,我们发现这两种易位都携带了HMLα,它位于HIS4C基因的远端超过30个图距单位处,而HIS4C基因通常位于第三条染色体上。在易位染色体(命名为T3)的情况下,我们还发现了易位染色体上的HMLα与第三条染色体上的HMLa之间的交换事件。在含有两条T3染色体(一条携带HMLα,另一条携带HMLa)的二倍体中,我们发现HML与HIS4C基因相距32厘摩,HIS4C基因与一个未知着丝粒相距10厘摩。在第三条染色体上携带HMLa MATa HMRa的同宗配合菌株中,从MATa转换为MATα可以通过使用易位染色体上的HMLα作为α信息的唯一供体来实现。从染色体T3上的HMLα转座的效率约为从完整的第三条染色体转座效率的20%至40%。相比之下,从插入到第十二条染色体中的HMLα转座效率降低了约100倍。这种降低的效率似乎不是由易位中紧邻HMLα的序列改变引起的。易位的HMLα序列位于与第三条染色体中相同大小(29千碱基)的SalI片段中,并且还发现了相同的EcoRI、HindIII和BglII限制性酶切位点。此外,HMLα仍然受CMT基因的控制,该基因将HML维持为交配型信息的沉默拷贝。这些结果表明,HMLα序列的位置在交配型转换效率中起着重要作用。

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