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真菌特异性HET结构域介导嗜鸟粪盘菌中的程序性细胞死亡。

The fungus-specific HET domain mediates programmed cell death in Podospora anserina.

作者信息

Paoletti M, Clavé C

机构信息

Laboratoire de Génétique Moléculaire des Champignons, UMR-5095 CNRS et Université de Bordeaux 2, IBGC, 1 rue Camille Saint-Saëns, 33077 Bordeaux Cedex, France.

出版信息

Eukaryot Cell. 2007 Nov;6(11):2001-8. doi: 10.1128/EC.00129-07. Epub 2007 Sep 14.

Abstract

Vegetative incompatibility is a programmed cell death reaction that occurs when fungal cells of unlike genotypes fuse. Genes defining vegetative incompatibility (het genes) are highly polymorphic, and most if not all incompatibility systems include a protein partner bearing the fungus-specific domain termed the HET domain. The nonallelic het-C/het-E incompatibility system is the best-characterized incompatibility system in Podospora anserina. Cell death is triggered by interaction of specific alleles of het-C, encoding a glycolipid transfer protein, and het-E, encoding a HET domain and a WD repeat domain involved in recognition. We show here that overexpression of the isolated HET domain from het-E results in cell death. This cell death is characterized by induction of autophagy, increased vacuolization, septation, and production of lipid droplets, which are hallmarks of cell death by incompatibility. In addition, the HET domain lethality is suppressed by the same mutations as vegetative incompatibility, but not by the inactivation of het-C. These results establish the HET domain as the mediator of cell death by incompatibility and lead to a modular conception of incompatibility systems whereby recognition is ensured by the variable regions of incompatibility proteins and cell death is triggered by the HET domain.

摘要

营养不亲和性是一种程序性细胞死亡反应,当不同基因型的真菌细胞融合时发生。定义营养不亲和性的基因(het基因)具有高度多态性,并且大多数(如果不是全部)不亲和性系统都包括一个带有真菌特异性结构域(称为HET结构域)的蛋白质伴侣。非等位基因het-C/het-E不亲和性系统是嗜热栖热放线菌中特征最明确的不亲和性系统。细胞死亡是由het-C的特定等位基因(编码一种糖脂转移蛋白)与het-E的相互作用触发的,het-E编码一个HET结构域和一个参与识别的WD重复结构域。我们在此表明,het-E中分离出的HET结构域的过表达会导致细胞死亡。这种细胞死亡的特征是自噬的诱导、空泡化增加、隔膜形成以及脂滴的产生,这些都是不亲和性导致细胞死亡的标志。此外,HET结构域的致死性与营养不亲和性一样,会被相同的突变所抑制,但不会因het-C的失活而被抑制。这些结果确立了HET结构域作为不亲和性导致细胞死亡的介质,并导致了不亲和性系统的模块化概念,即不亲和性蛋白质的可变区域确保识别,而细胞死亡由HET结构域触发。

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