College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, 310036, China.
Biotechnol Lett. 2010 Jul;32(7):979-87. doi: 10.1007/s10529-010-0240-x. Epub 2010 Mar 13.
The function of cytosolic AtHsp90.3 was characterized by complementing the Saccharomyces cerevisiae endogenous Hsp90 genes and overexpressing it in Arabidopsis thaliana. Though AtHsp90.3 supported the yeast growth under heat stress, in Arabidopsis, compared to the wild type, the transgenic plants overexpressing cytosolic AtHsp90.3 were more sensitive to heat stress with a lower germination rate and higher mortality but and more tolerant to high Ca(2+). Transcriptional expression of heat stress transcription factors, AtHsfA1d, AtHsfA7a and AtHsfB1, and two Hsps, AtHsp101 and AtHsp17, was delayed by constitutive overexpression of cytosolic AtHsp90.3 under heat stress. These results indicate that overexpressing AtHsp90.3 impaired plant tolerance to heat stress and proper homeostasis of Hsp90 was critical for cellular stress response and/or tolerance in plants.
细胞质 AtHsp90.3 的功能是通过互补酿酒酵母内源 Hsp90 基因并在拟南芥中过表达来表征的。尽管 AtHsp90.3 支持酵母在热应激下的生长,但与野生型相比,过表达细胞质 AtHsp90.3 的转基因植物对热应激更敏感,发芽率更低,死亡率更高,但对高 Ca(2+)更耐受。在热应激下,组成型过表达细胞质 AtHsp90.3 会延迟热应激转录因子 AtHsfA1d、AtHsfA7a 和 AtHsfB1 以及两个 Hsps(AtHsp101 和 AtHsp17)的转录表达。这些结果表明,过表达 AtHsp90.3 会损害植物对热应激的耐受性,而 Hsp90 的适当内稳态对于植物的细胞应激反应和/或耐受性至关重要。