Absence of Classical Heat Shock Response in the Citrus PathogenXylella fastidiosa
✍ Scribed by Daniel Martins-de-Souza; Gustavo Astua-Monge; Helvécio Della Coletta-Filho; Flavia Vischi Winck; Paulo Aparecido Baldasso; Bruno Menezes de Oliveira; Sérgio Marangoni; Marcos Antônio Machado; José Camillo Novello; Marcus Bustamante Smolka
- Publisher
- Springer
- Year
- 2009
- Tongue
- English
- Weight
- 95 KB
- Volume
- 59
- Category
- Article
- ISSN
- 0343-8651
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## Abstract | I. | Introduction | 245 | | II. | Global Regulatory Networks | 245 | | III. | Heat‐Shock Response | 247 | | | A. Control Elements in Gram‐Positive Bacteria | 247 | | | 1. Sigma B‐Controlled Genes | 247 | | | 2. HrcA‐CIRCE Controlled Genes | 249 | | | 3. Genes Controlle
The influence of cell hydration and taurine on the heat shock response was studied in primary rat hepatocytes. Heat-induced accumulation of inducible heat shock protein 70 (HSP70) mRNA and protein was increased under hypoosmotic conditions. In contrast, hyper-osmotic exposure blocked the HSP70 respo
Interferon (IFN) is not able to induce heat-shock protein (HSP) synthesis. However IFN pretreatment of mouse L cells has been shown to enhance the decrease of overall protein synthesis which follows a heat shock, and to stimulate the accumulation of HSPs. We show here that the synthesis of a protein