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Flanking direct repeats of hisG alter URA3 marker expression at the HWP1 locus of Candida albicans

机译:HWP1 Albicans Hwp1轨迹的HISG ALTER URA3标记表达的侧翼直接重复

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HWP1 encodes an adhesin of Candida albicans and has been implicated in filamentation and virulence. URA3, an often-used transformation selection marker, is apparently incorrectly expressed when integrated at the HWP1 locus, which results in an attenuated virulence phenotype. Expression of URA3 is compromised by ectopic integration at other loci as well. In contrast, prior studies from the authors' laboratory had demonstrated that the filamentation deficiency and attenuated virulence of hwp1Δ mutants were fully restored in rescued strains in which URA3 was integrated at the HWP1 locus. This discrepancy prompted a reinvestigation of these mutants. A series of congenic strains were constructed which demonstrated that the filamentation and virulence defects of a homozygous hwp1Δ mutant could be rescued without introduction of a functional HWP1 allele. Despite the absence of detectable differences in URA3 expression, analysis of suppressor mutations suggested that reduced URA3 expression gave rise to the mutant phenotypes. Several independent spontaneous suppressor mutations that restored filamentation to strains of genotype hwp1Δ?:?:?hisG-URA3-hisG/hwp1Δ?:?:?hisG had acquired a tandem duplication of the hisG-URA3-hisG marker cassette. The hwp1 null mutant and rescued strains differed by the presence or absence of flanking hisG sequence. Substitution of the hisG-URA3-hisG insert of the hwp1 null mutant with URA3 alone largely rescued the filamentation and virulence phenotypes. The presence of a single copy of hisG adjacent to URA3 had no effect. It is concluded that flanking direct repeats of hisG, present as part of a recyclable disruption cassette, negatively influenced URA3 expression and are responsible for the previously reported phenotypes of the hwp1 mutants.
机译:HWP1编码了念珠菌肽肽的粘附素,并涉及丝状和毒力。当在HWP1基因座中集成时,URA3通常使用的转化选择标记显然不正确地表达,这导致衰减的毒力表型。 URA3的表达也受到其他基因座的异位集成局部损害。相比之下,作者实验室的事先研究表明,HWP1δ突变体的丝状缺陷和减毒毒力完全恢复在救助菌株中,其中URA3整合在HWP1基因座。这种差异促进了这些突变体的再调用。构建了一系列先天性菌株,其证明,可以在不引入功能性HWP1等位基因的情况下救出纯合HWP1δ突变体的细丝和毒力缺陷。尽管ura3表达没有检测到的差异,但抑制突变的分析表明,降低的URA3表达产生了突变表型。几个独立的自发性抑制突变,恢复细丝对基因型HWP1δ的菌株?:?:?hisg-ura3-hisg /hwp1δ?:?:?hisg已经获得了Hisg-ura3-hisg标记盒的串联重复。 HWP1空突变体和救出的菌株通过存在或不存在侧翼序列不同。单独用URA3的HWP1零突变体的HISG-URA3-HISG插入物的替代在很大程度上拯救了丝锥和毒力表型。与URA3相邻的单个HISG的存在没有效果。得出结论,HISG的侧翼直接重复作为可回收破坏盒的一部分,对URA3表达产生负面影响,并负责先前报告的HWP1突变体的表型。

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