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紫外线照射和干燥调节普通念珠藻(蓝细菌)的三维细胞外基质。

UV irradiation and desiccation modulate the three-dimensional extracellular matrix of Nostoc commune (Cyanobacteria).

作者信息

Wright Deborah J, Smith Sue C, Joardar Vinita, Scherer Siegfried, Jervis Jody, Warren Andrew, Helm Richard F, Potts Malcolm

机构信息

Virginia Tech Center for Genomics, Department of Biochemistry, Virginia Tech, Blacksburg, Virginia 24061, USA.

出版信息

J Biol Chem. 2005 Dec 2;280(48):40271-81. doi: 10.1074/jbc.M505961200. Epub 2005 Sep 27.

Abstract

Cyanobacterium Nostoc commune can tolerate the simultaneous stresses of desiccation, UV irradiation, and oxidation. Acidic WspA, of approximately 33.6 kDa, is secreted to the three-dimensional extracellular matrix and accounts for greater than 70% of the total soluble protein. The wspA gene of N. commune strain DRH1 was cloned and found in a single genomic copy, in a monocistronic operon. Transcription of wspA and sodF (superoxide dismutase), and synthesis and secretion of WspA, were induced upon desiccation or UV-A/B irradiation of cells. Recombinant WspA binds the UV-A/B absorbing pigment scytonemin through non-covalent interactions. WspA peptide polymorphism, and heterogeneity of multiple wspA sequences within cells of a single colony, account for distinct WspA isoforms. WspA has no similarity to entries in the sequence databases and wspA, a possible xenolog, is restricted to a subset of strains in the "form species" N. commune characterized through group I intron phylogeny. We hypothesize that WspA plays a central role in the global stress response of N. commune through modulation of the structure and function of the three-dimensional extracellular matrix, particularly the transport, distribution, and/or macromolecular architecture of mycosporine and scytonemin UV-A/B absorbing pigment complexes.

摘要

普通念珠藻能够耐受干燥、紫外线照射和氧化的同时胁迫。约33.6 kDa的酸性WspA分泌到三维细胞外基质中,占总可溶性蛋白的70%以上。克隆了普通念珠藻菌株DRH1的wspA基因,发现其在单顺反子操纵子中以单基因组拷贝形式存在。细胞干燥或紫外线A/B照射后,wspA和sodF(超氧化物歧化酶)的转录以及WspA的合成和分泌被诱导。重组WspA通过非共价相互作用结合吸收紫外线A/B的色素scytonemin。WspA肽多态性以及单个菌落细胞内多个wspA序列的异质性导致了不同的WspA同工型。WspA与序列数据库中的条目没有相似性,wspA可能是一种外来同源基因,仅限于通过I组内含子系统发育表征的“形态种”普通念珠藻中的一部分菌株。我们假设WspA通过调节三维细胞外基质的结构和功能,特别是霉菌孢素和scytonemin紫外线A/B吸收色素复合物的运输、分布和/或大分子结构,在普通念珠藻的全局应激反应中发挥核心作用。

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