Bryantsev Anton L, Loktionova Svetlana A, Ilyinskaya Olga P, Tararak Eduard M, Kampinga Harm H, Kabakov Alexander E
Molecular and Cellular Cardiology Lab, Institute of Experimental Cardiology, Cardiology Research Centre, Moscow, Russia.
Cell Stress Chaperones. 2002 Apr;7(2):146-55. doi: 10.1379/1466-1268(2002)007<0146:dpaaoh>2.0.co;2.
The behavior of the endogenous heat shock protein 25 (Hsp25) in heat-stressed rat H9c2 myoblasts was studied. After mild or severe heating, this protein became less extractable with Triton X-100 and displayed characteristic immunofluorescence patterns, namely (1) granules in the nucleus, and (2) association with F-actin bundles in the cytoplasm. The intranuclear granulation of Hsp25 and its association with F-actin were sensitive to drugs affecting Hsp25 phosphorylation (cantharidin, sodium orthovanadate, SB203580, SB202190). Isoform analysis of Hsp25 translocated to the nucleus-free cytoskeletal fraction revealed only mono- and biphosphorylated Hsp25 and no unphosphorylated Hsp25. Transfected luciferase with initial localization in the nucleosol became colocalized with the Hsp25-containing granules after a heat shock treatment that denatured the enzyme in the cells. The association of Hsp25 with actin filaments after a mild heat stress conferred protection from subsequent F-actin-damaging treatments with cytochalasins (D and B) or severe heat stress. We hypothesize that (1) the binding of heat-denatured nucleosolic proteins to the Hsp25 contained in specific granular structures may serve for the subsequent chaperoning or degradation of the bound proteins, and (2) the actin cytoskeleton is stabilized by the direct targeting of phosphorylated Hsp25 to microfilament bundles.
研究了内源性热休克蛋白25(Hsp25)在热应激大鼠H9c2成肌细胞中的行为。轻度或重度加热后,该蛋白用Triton X - 100提取的难度增加,并呈现出特征性的免疫荧光模式,即(1)细胞核内的颗粒,以及(2)与细胞质中的F - 肌动蛋白束相关联。Hsp25的核内颗粒形成及其与F - 肌动蛋白的关联对影响Hsp25磷酸化的药物(斑蝥素、原钒酸钠、SB203580、SB202190)敏感。对转移至无核细胞骨架部分的Hsp25进行亚型分析,结果显示只有单磷酸化和双磷酸化的Hsp25,没有未磷酸化的Hsp25。初始定位于核溶质中的转染荧光素酶在热休克处理使细胞中的酶变性后,与含Hsp25的颗粒共定位。轻度热应激后Hsp25与肌动蛋白丝的关联可保护细胞免受随后用细胞松弛素(D和B)或重度热应激对F - 肌动蛋白造成的损伤。我们推测:(1)热变性的核溶质蛋白与特定颗粒结构中所含的Hsp25结合,可能有助于随后对结合蛋白进行伴侣介导或降解;(2)磷酸化的Hsp25直接靶向微丝束可稳定肌动蛋白细胞骨架。