Coustou V, Deleu C, Saupe S, Begueret J
Laboratoire de Génétique Moléculaire des Champignons Filamenteux, Institut de Biochimie et Génétique Cellulaires, Centre National de la Recherche Scientifique Unité Propre de Recherche 9026, 33077 Bordeaux cedex, France.
Proc Natl Acad Sci U S A. 1997 Sep 2;94(18):9773-8. doi: 10.1073/pnas.94.18.9773.
The het-s locus of Podospora anserina is a heterokaryon incompatibility locus. The coexpression of the antagonistic het-s and het-S alleles triggers a lethal reaction that prevents the formation of viable heterokaryons. Strains that contain the het-s allele can display two different phenotypes, [Het-s] or [Het-s*], according to their reactivity in incompatibility. The detection in these phenotypically distinct strains of a protein expressed from the het-s gene indicates that the difference in reactivity depends on a posttranslational difference between two forms of the polypeptide encoded by the het-s gene. This posttranslational modification does not affect the electrophoretic mobility of the protein in SDS/PAGE. Several results suggest a similarity of behavior between the protein encoded by the het-s gene and prions. The [Het-s] character can propagate in [Het-s*] strains as an infectious agent, producing a [Het-s*] --> [Het-s] transition, independently of protein synthesis. Expression of the [Het-s] character requires a functional het-s gene. The protein present in [Het-s] strains is more resistant to proteinase K than that present in [Het-s*] mycelium. Furthermore, overexpression of the het-s gene increases the frequency of the transition from [Het-s*] to [Het-s]. We propose that this transition is the consequence of a self-propagating conformational modification of the protein mediated by the formation of complexes between the two different forms of the polypeptide.
嗜热栖粪壳菌(Podospora anserina)的het-s位点是一个异核体不相容性位点。拮抗性het-s和het-S等位基因的共表达会引发致命反应,阻止有活力的异核体形成。含有het-s等位基因的菌株根据其在不相容性中的反应性可表现出两种不同的表型,即[Het-s]或[Het-s*]。在这些表型不同的菌株中检测到由het-s基因表达的一种蛋白质,这表明反应性的差异取决于het-s基因编码的两种多肽形式之间的翻译后差异。这种翻译后修饰不影响该蛋白质在SDS/PAGE中的电泳迁移率。多项结果表明het-s基因编码的蛋白质与朊病毒在行为上具有相似性。[Het-s]特征可以作为一种感染因子在[Het-s*]菌株中传播,导致[Het-s*]向[Het-s]的转变,且与蛋白质合成无关。[Het-s]特征的表达需要一个功能正常的het-s基因。[Het-s]菌株中存在的蛋白质比[Het-s*]菌丝体中存在的蛋白质对蛋白酶K更具抗性。此外,het-s基因的过表达会增加从[Het-s*]向[Het-s]转变的频率。我们提出这种转变是由两种不同形式的多肽之间形成复合物介导的蛋白质自我传播构象修饰的结果。