巴西副球虫分离株在特定阶段和细胞分化过程中的蛋白质合成模式。

S. M. Salem-Izacc, R. S. Jesuíno, W. A. Brito, M. Pereira, M. Felipe, C. M. Soares
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引用次数: 23

摘要

本文比较了巴西副球虫分离株的蛋白质合成模式。比较了酵母和菌丝体的蛋白质谱,并通过计算相似矩阵和将分离物按树状图分组进行了相似性分析。检测的分离株在36℃时表现出高度可变的细胞形态,而典型的酵母细胞是预期的。另一方面,在26℃时,所有分离株都表现出菌丝形态。蛋白质合成谱分析使得将巴西疟原虫分离物聚类成与形态学数据相关的群成为可能。有趣的是,生长在36摄氏度强烈降低蛋白质合成模式的异质性,在菌丝分离物中看到。根据二维蛋白质合成分析,可以将在36℃下生长的分离株聚类为三组。与酵母细胞相比,菌丝分离物的相似性指数较低,表明在宿主适应形态中,基因表达模式比在腐殖质期更为均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protein synthesis patterns of Paracoccidiodes brasiliensis isolates in stage-specific forms and during cellular differentiation.
In this paper we compared the protein synthesis patterns of Paracoccidioides brasiliensis isolates. The protein profiles were compared for both yeast and mycelial forms and similarity analysis among them was performed by calculating similarity matrices and grouping the isolates in dendrograms. The examined isolates exhibited highly variable cellular morphology at 36 degrees C, when typical yeast cells were expected. On the other hand, at 26 degrees C all the isolates showed mycelial morphology. The analysis of protein synthesis profiles made it possible to cluster the P. brasiliensis isolates into groups that correlated with the morphological data. Interestingly, growth at 36 degrees C strongly decreased the heterogeneity of protein synthesis patterns seen in mycelial isolates. It was possible to cluster the isolates grown at 36 degrees C in three groups based on their two-dimensional protein synthesis analysis. The similarity index observed among the mycelial isolates was lower than that obtained with yeast cells, suggesting a more homogenous gene expression pattern in the host-adapted form than in the saprobic phase.
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