Conditional expression of harpinPss causes yeast cell death that shares features of cell death pathway with harpinPss-mediated plant hypersensitive response (HR)

Podile, Appa Rao ; Lin, Hao-Jan ; Staniforth, Vanisree ; Sripriya, Paranthaman ; Chen, Long-Fang Oliver ; Feng, Teng-Yung (2001) Conditional expression of harpinPss causes yeast cell death that shares features of cell death pathway with harpinPss-mediated plant hypersensitive response (HR) Physiological and Molecular Plant Pathology, 58 (6). pp. 267-276. ISSN 0885-5765

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Official URL: http://www.sciencedirect.com/science/article/pii/S...

Related URL: http://dx.doi.org/10.1006/pmpp.2001.0336

Abstract

Conditional expression of harpinPss causes yeast cell death that shares features of cell death pathway with harpinPss-mediated plant hypersensitive response (HR). Pseudomonas syringae pv.syringae 61 hrp Z gene encodes harpinPss, a 34.7 kD extracellular protein that elicits a hypersensitive response (HR) in plants. Conditional expression of either full-length or truncated hrp Z sequences under the GAL1 promoter caused cell death in Saccharomyces cerevisiae Y187. Plating of pYEUT- hrp Z transformants on a medium containing galactose resulted in complete inhibition of colony formation, whereas their growth on a glucose-based medium was unaffected. Western blot analysis confirmed the expression of harpinPss in yeast cells transformed with pYEUT- hrp Z and grown in galactose-containing medium. A time-dependent decline in the percentage of trypan blue-excluding cells in cultures of pYEUT- hrp Z transformants was observed when cultured on galactose-containing medium. Similarly, the number of viable cells reduced to about 50% within 6 h. There were similarities in the harpinPss-mediated cell death in plants and yeast cell death (YCD). Galactose-induced cell death in pYEUT-hrp Z transformants of S. cerevisiae Y187 was suppressed by a protein kinase inhibitor K252a (10 μ M). The viability of pYEUT- hrp Z transformants was prolonged in the presence of 100 U ml−1 catalase suggesting a role for the oxidative burst in YCD that was further supported by the flow cytometric patterns of propidium iodide uptake by yeast cells. Overall, it appears that yeast provides a useful model system to understand the molecular mechanism of harpinPss-mediated cell death.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:HarpinPss; Hypersensitive Response; Yeast Cell Death; GAL1 Promoter; Conditional Expression; Plant HR; Cell Death Pathway
ID Code:103862
Deposited On:09 Mar 2018 11:10
Last Modified:09 Mar 2018 11:10

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