Cazalé Anne-Claire, Clément Mathilde, Chiarenza Serge, Roncato Marie-Anne, Pochon Nathalie, Creff Audrey, Marin Elena, Leonhardt Nathalie, Noël Laurent D
CEA, DSV, IBEB, F-13108 Saint-Paul-lez-Durance, France.
J Exp Bot. 2009;60(9):2653-64. doi: 10.1093/jxb/erp109. Epub 2009 May 14.
Molecular chaperones of the heat shock cognate 70 kDa (HSC70) family are highly conserved in all living organisms and assist nascent protein folding in normal physiological conditions as well as in biotic and abiotic stress conditions. In the absence of specific inhibitors or viable knockout mutants, cytosolic/nuclear HSC70-1 overexpression (OE) and mutants in the HSC70 co-chaperone SGT1 (suppressor of G(2)/M allele of skp1) were used as genetic tools to identify HSC70/SGT1 functions in Arabidopsis development and abiotic stress responses. HSC70-1 OE caused a reduction in root and shoot meristem activities, thus explaining the dwarfism of those plants. In addition, HSC70-1 OE did not impair auxin-dependent phenotypes, suggesting that SGT1 functions previously identified in auxin signalling are HSC70 independent. While responses to abiotic stimuli such as UV-C exposure, phosphate starvation, or seedling de-etiolation were not perturbed by HSC70-1 OE, it specifically conferred gamma-ray hypersensitivity and tolerance to salt, cadmium (Cd), and arsenic (As). Cd and As perception was not perturbed, but plants overexpressing HSC70-1 accumulated less Cd, thus providing a possible molecular explanation for their tolerance phenotype. In summary, genetic evidence is provided for HSC70-1 involvement in a limited set of physiological processes, illustrating the essential and yet specific functions of this chaperone in development and abiotic stress responses in Arabidopsis.
热休克同源70千道尔顿(HSC70)家族的分子伴侣在所有生物中都高度保守,在正常生理条件以及生物和非生物胁迫条件下协助新生蛋白质折叠。在没有特异性抑制剂或可行的基因敲除突变体的情况下,胞质/核HSC70 - 1过表达(OE)和HSC70共伴侣SGT1(skp1的G(2)/M等位基因的抑制子)中的突变体被用作遗传工具,以鉴定HSC70/SGT1在拟南芥发育和非生物胁迫反应中的功能。HSC70 - 1 OE导致根和茎分生组织活性降低,从而解释了这些植物的矮化现象。此外,HSC70 - 1 OE并未损害生长素依赖性表型,这表明先前在生长素信号传导中鉴定出的SGT1功能不依赖于HSC70。虽然对非生物刺激如UV - C照射、磷饥饿或幼苗去黄化的反应不受HSC70 - 1 OE的干扰,但它特别赋予了对γ射线的超敏感性以及对盐、镉(Cd)和砷(As)的耐受性。Cd和As的感知未受干扰,但过表达HSC70 - 1的植物积累的Cd较少,从而为它们的耐受表型提供了一种可能的分子解释。总之,提供了遗传证据表明HSC70 - 1参与了一组有限的生理过程,说明了这种分子伴侣在拟南芥发育和非生物胁迫反应中的重要但特定的功能。