Bogdanova A I, Agaphonov M O, Ter-Avanesyan M D
Institute of Experimental Cardiology, Cardiology Research Center, Moscow, Russia.
Yeast. 1995 Apr 15;11(4):343-53. doi: 10.1002/yea.320110407.
During studies of integrative transformation in Hansenula polymorpha, it was found that transformants with plasmids possessing the LEU2 gene of H. polymorpha were frequently unstable and lost plasmids while growing on non-selective medium. These transformants possessed reorganized plasmids capable of replication in H. polymorpha. Two such plasmids were isolated and characterized. It was shown that they contain additional DNA segments which were not present in the original plasmid used for transformation. Southern hybridization analysis carried out with labeled DNA probes derived from these segments showed that they consisted of H. polymorpha DNA. The hybridization patterns indicated that corresponding sequences were homologous to several chromosomal regions. These chromosomal DNA segments apparently carried H. polymorpha autonomous replicating sequences (HARS), since plasmids bearing them could transform H. polymorpha with high efficiency and were maintained in transformants in an autonomous state. Sequence analysis of one such captured chromosomal fragment revealed several eight- to ten-base AT-rich blocks similar to the presumed HARS sequence defined by Roggenkamp et al. (1986). Analogous reorganization was also observed with respect to integrative plasmids carrying the TRP3 and HIS3 genes of H. polymorpha and the ADE2 gene of Saccharomyces cerevisiae as selectable markers.
在多形汉逊酵母的整合转化研究过程中,发现携带多形汉逊酵母LEU2基因的质粒转化子在非选择性培养基上生长时常常不稳定且会丢失质粒。这些转化子拥有能够在多形汉逊酵母中复制的重组质粒。分离并鉴定了两个这样的质粒。结果表明它们含有转化所用原始质粒中不存在的额外DNA片段。用源自这些片段的标记DNA探针进行的Southern杂交分析表明,它们由多形汉逊酵母DNA组成。杂交模式表明相应序列与几个染色体区域同源。这些染色体DNA片段显然携带了多形汉逊酵母自主复制序列(HARS),因为携带它们的质粒能够高效转化多形汉逊酵母并以自主状态维持在转化子中。对一个这样捕获的染色体片段的序列分析揭示了几个八到十个碱基的富含AT的区域,类似于Roggenkamp等人(1986年)定义的假定HARS序列。对于携带多形汉逊酵母的TRP3和HIS3基因以及酿酒酵母的ADE2基因作为选择标记的整合质粒,也观察到了类似的重组现象。