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新型诱导的 mlo 突变等位基因与定点突变相结合,揭示了大麦 Mlo 蛋白中具有重要功能的七螺旋区。

Novel induced mlo mutant alleles in combination with site-directed mutagenesis reveal functionally important domains in the heptahelical barley Mlo protein.

机构信息

Max-Planck Institute for Plant Breeding Research, Department of Plant-Microbe Interactions, Carl-von-Linné-Weg 10, 50829 Köln, Germany.

出版信息

BMC Plant Biol. 2010 Feb 19;10:31. doi: 10.1186/1471-2229-10-31.

Abstract

BACKGROUND

Recessively inherited natural and induced mutations in the barley Mlo gene confer durable broad-spectrum resistance against the powdery mildew pathogen, Blumeria graminis f.sp. hordei. Mlo codes for a member of a plant-specific family of polytopic integral membrane proteins with unknown biochemical activity. Resistant barley mlo mutant alleles identify amino acid residues that are critical for Mlo function in the context of powdery mildew susceptibility.

RESULTS

We molecularly analyzed a novel set of induced barley mlo mutants and used site-directed mutagenesis in combination with transient gene expression to unravel novel amino acid residues of functional significance. We integrate these results with previous findings to map functionally important regions of the heptahelical Mlo protein. Our data reveal the second and third cytoplasmic loop as being particularly sensitive to functional impediment by mutational perturbation, suggesting that these regions are critical for the susceptibility-conferring activity of the Mlo protein. In contrast, only mutations in the second but not the third cytoplasmic loop appear to trigger the Endoplasmic Reticulum-localized quality control machinery that ensures the biogenesis of properly folded membrane proteins.

CONCLUSION

Our findings identify functionally important regions of the polytopic barley Mlo protein and reveal the differential sensitivity of individual protein domains to cellular quality control.

摘要

背景

在大麦 Mlo 基因中隐性遗传的自然和诱导突变赋予了对禾谷类作物白粉病病原体的持久广谱抗性。Mlo 编码一种植物特异性的多跨整合膜蛋白家族成员,其生化活性未知。抗性大麦 mlo 突变等位基因鉴定出在白粉病易感性背景下对 Mlo 功能至关重要的氨基酸残基。

结果

我们对一组新的诱导大麦 mlo 突变体进行了分子分析,并结合瞬时基因表达进行了定点诱变,以揭示具有功能意义的新氨基酸残基。我们将这些结果与以前的发现相结合,以绘制七螺旋 Mlo 蛋白的功能重要区域。我们的数据表明,第二和第三个细胞质环对功能障碍特别敏感,这表明这些区域对于 Mlo 蛋白的易感性赋予活性至关重要。相比之下,只有第二细胞质环而不是第三细胞质环的突变似乎会触发内质网定位的质量控制机制,该机制确保了正确折叠的膜蛋白的生物发生。

结论

我们的研究结果确定了多跨大麦 Mlo 蛋白的功能重要区域,并揭示了单个蛋白结构域对细胞质量控制的不同敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/befb/2844067/a74efdc022cb/1471-2229-10-31-1.jpg

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