Ish-Shalom D, Kloppstech K, Ohad I
Department of Biological Chemistry, Hebrew University of Jerusalem, Israel.
EMBO J. 1990 Sep;9(9):2657-61. doi: 10.1002/j.1460-2075.1990.tb07450.x.
Expression of the nuclear coded heat shock protein HSP22 in Chlamydomonas reinhardtii y-1 cells is light regulated at the level of transcript accumulation. In dark grown cells, containing a non-differentiated plastid, light has an additional regulatory effect on the accumulation of HSP22. When such cells are exposed to heat stress in the light, poly(A)+ RNA hybridizing with the HS22 probe is synthesized at levels comparable with those found in cells pre-illuminated for 3 h (greening) prior to the heat shock. However, this RNA is poorly translated in vitro and HSP22 does not accumulate in vivo. HS22 mRNA efficiently translated in vitro is induced in dark grown cells only when chloroplast differentiation has been initiated by exposure to the light for 3 h. In these cells HSP22 accumulates during heat shock. Inhibition of plastid translation activity during light-dependent chloroplast development prevents accumulation of HSP22 in vivo. However the HS22 mRNA formed in this case can be efficiently translated in vitro. Light requirement for the accumulation of HSP22 during heat stress is exhibited also by wild type C. reinhardtii cells which possess a differentiated chloroplast irrespective of the light conditions during cell growth. However dark grown wild type cells do not require pre-illumination for developing the ability to accumulate HSP22 during heat stress in the light.
核编码热休克蛋白HSP22在莱茵衣藻y-1细胞中的表达在转录本积累水平上受光调控。在含有未分化质体的黑暗生长细胞中,光对HSP22的积累有额外的调节作用。当这些细胞在光照下受到热胁迫时,与HS22探针杂交的多聚腺苷酸(poly(A)+)RNA的合成水平与热休克前预光照3小时(绿化)的细胞中发现的水平相当。然而,这种RNA在体外翻译效率很低,并且HSP22在体内不积累。只有当通过光照3小时启动叶绿体分化时,在黑暗生长的细胞中才会诱导出在体外能有效翻译的HS22 mRNA。在这些细胞中,HSP22在热休克期间积累。在依赖光的叶绿体发育过程中抑制质体翻译活性会阻止HSP22在体内积累。然而,在这种情况下形成HS22 mRNA可以在体外有效翻译。无论细胞生长期间的光照条件如何,具有分化叶绿体的野生型莱茵衣藻细胞在热胁迫期间积累HSP22时也表现出对光的需求。然而,黑暗生长的野生型细胞在光照下热胁迫期间积累HSP22的能力发展不需要预光照。