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生态相关热激对笠贝(Haliotis asinina)中热休克蛋白发育功能的影响

Impact of ecologically relevant heat shocks on Hsp developmental function in the vetigastropod Haliotis asinina.

作者信息

Gunter Helen M, Degnan Bernard M

机构信息

University of Queensland, Brisbane, Queensland, Australia.

出版信息

J Exp Zool B Mol Dev Evol. 2008 Jul 15;310(5):450-64. doi: 10.1002/jez.b.21217.

Abstract

Heat shock proteins (Hsps) are essential for cellular maintenance, normal differentiation and morphogenesis, and protection against a range of environmental stresses. It is unknown which of these roles takes precedence when they are required simultaneously. Here we examined the impact of thermal stress on the complex developmental expression patterns of HasHsp70 and HasHsp90A in the vetigastropod Haliotis asinina. We find that near-lethal heat shocks do not alter the spatial demarcation of Hsp expression despite such treatments impacting on the external character of the embryos. Using a suite of molecular markers that are both coexpressed with the Hsps (i.e. in ventrolateral ectoderm and prototroch) and expressed in tissues that have lower (basal) Hsp expression (e.g. serotonergic nervous system and shell gland), we determined that Hsp-expressing tissues do not incur markedly less thermal damage than adjacent tissues. To explore the relationship of Hsp expression with sensitivity of specific cell territories to heat shock, we focused on the formation of the prototroch, a tissue where HasHsp70 and HasHsp90A are coexpressed. By heat shocking at specific developmental stages, we determined that the most sensitive period of prototroch development is during its early specification and differentiation, which overlaps with the time the Hsps are expressed at their highest levels in these cells. This correlation is consistent with heat shock impairing the function of Hsps in regions of the H. asinina embryo undergoing morphogenesis.

摘要

热休克蛋白(Hsps)对于细胞维持、正常分化和形态发生以及抵御一系列环境应激至关重要。当这些作用同时需要时,哪一个作用更为优先尚不清楚。在这里,我们研究了热应激对笠贝(Haliotis asinina)中HasHsp70和HasHsp90A复杂的发育表达模式的影响。我们发现,尽管近致死性热休克处理会影响胚胎的外部特征,但并不会改变热休克蛋白表达的空间界限。使用一组与热休克蛋白共表达(即在腹外侧外胚层和原担轮中)以及在热休克蛋白表达较低(基础水平)的组织(如5-羟色胺能神经系统和壳腺)中表达的分子标记,我们确定表达热休克蛋白的组织所遭受的热损伤并不明显少于相邻组织。为了探究热休克蛋白表达与特定细胞区域对热休克敏感性之间的关系,我们聚焦于原担轮的形成,原担轮是一个同时表达HasHsp70和HasHsp90A的组织。通过在特定发育阶段进行热休克处理,我们确定原担轮发育最敏感的时期是在其早期特化和分化阶段,这与热休克蛋白在这些细胞中表达达到最高水平的时间重叠。这种相关性与热休克损害正在进行形态发生的笠贝胚胎区域中热休克蛋白的功能一致。

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