Espagne Eric, Balhadère Pascale, Penin Marie-Louise, Barreau Christian, Turcq Béatrice
Institut de Biochimie et de Génétique Cellulaires, CNRS UMR 5095, 33077 Bordeaux, France.
Genetics. 2002 May;161(1):71-81. doi: 10.1093/genetics/161.1.71.
Vegetative incompatibility, which is very common in filamentous fungi, prevents a viable heterokaryotic cell from being formed by the fusion of filaments from two different wild-type strains. Such incompatibility is always the consequence of at least one genetic difference in specific genes (het genes). In Podospora anserina, alleles of the het-e and het-d loci control heterokaryon viability through genetic interactions with alleles of the unlinked het-c locus. The het-d2(Y) gene was isolated and shown to have strong similarity with the previously described het-e1(A) gene. Like the HET-E protein, the HET-D putative protein displayed a GTP-binding domain and seemed to require a minimal number of 11 WD40 repeats to be active in incompatibility. Apart from incompatibility specificity, no other function could be identified by disrupting the het-d gene. Sequence comparison of different het-e alleles suggested that het-e specificity is determined by the sequence of the WD40 repeat domain. In particular, the amino acids present on the upper face of the predicted beta-propeller structure defined by this domain may confer the incompatible interaction specificity.
营养体不亲和性在丝状真菌中非常普遍,它会阻止两个不同野生型菌株的菌丝融合形成有活力的异核体细胞。这种不亲和性总是特定基因(het基因)中至少一个遗传差异的结果。在栗疫霉中,het-e和het-d位点的等位基因通过与不连锁的het-c位点的等位基因发生遗传相互作用来控制异核体的活力。het-d2(Y)基因被分离出来,并显示出与先前描述的het-e1(A)基因有很强的相似性。与HET-E蛋白一样,推测的HET-D蛋白也显示出一个GTP结合结构域,并且似乎需要最少11个WD40重复序列才能在不亲和性中发挥作用。除了不亲和性特异性外,通过破坏het-d基因无法确定其他功能。不同het-e等位基因的序列比较表明,het-e特异性由WD40重复结构域的序列决定。特别是,由该结构域定义的预测β-螺旋桨结构上表面的氨基酸可能赋予不亲和相互作用特异性。