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蛋白质组学分析表明,半胱天冬酶样和类糜蛋白酶样活性对于参与生物胁迫早期响应的蛋白酶的激活是可有可无的。

Proteomics Analysis Reveals That Caspase-Like and Metacaspase-Like Activities Are Dispensable for Activation of Proteases Involved in Early Response to Biotic Stress in L.

机构信息

Sechenov First Moscow State Medical University, Institute of Molecular Medicine, Trubetskaya str., 8, bld. 2, Moscow 119991, Russia.

Institute of Biomedical Chemistry, Pogodinskaya str., 10, bld. 8, Moscow 119121, Russia.

出版信息

Int J Mol Sci. 2018 Dec 11;19(12):3991. doi: 10.3390/ijms19123991.

Abstract

Plants, including L., are constantly attacked by various pathogens which induce immune responses. Immune processes in plants are tightly regulated by proteases from different families within their degradome. In this study, a wheat degradome was characterized. Using profile hidden Markov model (HMMer) algorithm and Pfam database, comprehensive analysis of the genome revealed a large number of proteases (1544 in total) belonging to the five major protease families: serine, cysteine, threonine, aspartic, and metallo-proteases. Mass-spectrometry analysis revealed a 30% difference between degradomes of distinct wheat cultivars (Khakasskaya and Darya), and infection by biotrophic ( Rob. ex Desm f. sp. tritici) or necrotrophic () pathogens induced drastic changes in the presence of proteolytic enzymes. This study shows that an early immune response to biotic stress is associated with the same core of proteases from the C1, C48, C65, M24, M41, S10, S9, S8, and A1 families. Further liquid chromatography-mass spectrometry (LC-MS) analysis of the detected protease-derived peptides revealed that infection by both pathogens enhances overall proteolytic activity in wheat cells and leads to activation of proteolytic cascades. Moreover, sites of proteolysis were identified within the proteases, which probably represent targets of autocatalytic activation, or hydrolysis by another protease within the proteolytic cascades. Although predicted substrates of metacaspase-like and caspase-like proteases were similar in biotrophic and necrotrophic infections, proteolytic activation of proteases was not found to be associated with metacaspase-like and caspase-like activities. These findings indicate that the response of to biotic stress is regulated by unique mechanisms.

摘要

植物,包括小麦,不断受到各种病原体的攻击,这些病原体诱导免疫反应。植物的免疫过程受到其降解组中不同家族蛋白酶的严格调控。在这项研究中,对小麦降解组进行了特征描述。使用轮廓隐马尔可夫模型(HMMer)算法和 Pfam 数据库,对基因组进行综合分析,揭示了大量属于五大主要蛋白酶家族的蛋白酶(共 1544 种):丝氨酸、半胱氨酸、苏氨酸、天冬氨酸和金属蛋白酶。质谱分析显示,不同小麦品种(哈卡斯卡娅和达里亚)的降解组之间存在 30%的差异,而生物营养型( Rob. ex Desm f. sp. tritici)或坏死型()病原体的感染导致蛋白酶的存在发生了剧烈变化。这项研究表明,对生物胁迫的早期免疫反应与来自 C1、C48、C65、M24、M41、S10、S9、S8 和 A1 家族的核心蛋白酶有关。进一步对检测到的蛋白酶衍生肽进行液相色谱-质谱(LC-MS)分析表明,两种病原体的感染均增强了小麦细胞中的整体蛋白水解活性,并导致蛋白水解级联的激活。此外,还鉴定了蛋白酶中的蛋白水解位点,这些位点可能代表自催化激活的靶标,或蛋白水解级联中另一种蛋白酶的水解靶标。尽管生物营养型和坏死型感染中类似的天冬氨酸蛋白酶和半胱氨酸蛋白酶的预测底物相似,但蛋白酶的蛋白水解激活并未与类似天冬氨酸蛋白酶和半胱氨酸蛋白酶的活性相关联。这些发现表明, 对生物胁迫的反应受到独特机制的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfe4/6320887/3540375938fa/ijms-19-03991-g001.jpg

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