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牙龈密螺旋体对环境条件的转录谱反应。

Transcriptional profiles of Treponema denticola in response to environmental conditions.

机构信息

Department of Microbiology, University of California Los Angeles, Los Angeles, California, United States of America.

出版信息

PLoS One. 2010 Oct 27;5(10):e13655. doi: 10.1371/journal.pone.0013655.

Abstract

The periodontal pathogen T. denticola resides in a stressful environment rife with challenges, the human oral cavity. Knowledge of the stress response capabilities of this invasive spirochete is currently very limited. Whole genome expression profiles in response to different suspected stresses including heat shock, osmotic downshift, oxygen and blood exposure were examined. Most of the genes predicted to encode conserved heat shock proteins (HSPs) were found to be induced under heat and oxygen stress. Several of these HSPs also seem to be important for survival in hypotonic solutions and blood. In addition to HSPs, differential regulation of many genes encoding metabolic proteins, hypothetical proteins, transcriptional regulators and transporters was observed in patterns that could betoken functional associations. In summary, stress responses in T. denticola exhibit many similarities to the corresponding stress responses in other organisms but also employ unique components including the induction of hypothetical proteins.

摘要

牙周病原体 T. denticola 栖息在充满挑战的恶劣环境中,即人类口腔。目前,人们对这种侵袭性螺旋体的应激反应能力知之甚少。本研究检测了全基因组表达谱对不同疑似应激(包括热休克、渗透压下降、氧气和血液暴露)的反应。研究发现,预测编码保守热休克蛋白(HSPs)的大多数基因在热和氧应激下被诱导。其中一些 HSP 似乎对在低渗溶液和血液中的存活也很重要。除 HSP 外,还观察到许多代谢蛋白、假设蛋白、转录调节剂和转运蛋白的编码基因的差异调节,其模式可能暗示功能关联。总之,T. denticola 的应激反应与其他生物体的相应应激反应有许多相似之处,但也采用了独特的成分,包括诱导假设蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8443/2965109/49205d3700ea/pone.0013655.g001.jpg

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