Jakob U, Gaestel M, Engel K, Buchner J
Institut für Biophysik & Physikalische Biochemie, Universität Regensburg, Germany.
J Biol Chem. 1993 Jan 25;268(3):1517-20.
Small heat shock proteins (sHsp) with a molecular mass of 15-30 kDa are ubiquitous and conserved. Up to now their function has remained enigmatic. Increased expression under heat shock conditions and their protective effect on cell viability at elevated temperatures suggest that they may have a function in the formation or maintenance of the native conformation of cytosolic proteins. To test this hypothesis we studied the influence of murine Hsp25, human Hsp27, and bovine alpha-B-crystallin (an eye lens protein homologous to sHsps) on the unfolding and refolding of citrate synthase and alpha-glucosidase in vitro. Here we show that all sHsps investigated act as molecular chaperones in these folding reactions. At stoichiometric amounts they maximally prevent the aggregation of citrate synthase and alpha-glucosidase under heat shock conditions and stabilize the proteins. Furthermore, they promote the functional refolding of these proteins after urea denaturation similar to GroE and Hsp90. The interaction both with unfolding and refolding proteins seems to be ATP-independent.
分子量为15 - 30 kDa的小分子热休克蛋白(sHsp)广泛存在且保守。到目前为止,它们的功能仍然成谜。在热休克条件下表达增加以及它们在高温下对细胞活力的保护作用表明,它们可能在胞质蛋白天然构象的形成或维持中发挥作用。为了验证这一假设,我们在体外研究了小鼠Hsp25、人Hsp27和牛α-B-晶状体蛋白(一种与sHsp同源的眼晶状体蛋白)对柠檬酸合酶和α-葡萄糖苷酶的解折叠和重折叠的影响。在这里我们表明,所有研究的sHsp在这些折叠反应中都作为分子伴侣起作用。在化学计量比的量下,它们在热休克条件下最大程度地防止柠檬酸合酶和α-葡萄糖苷酶的聚集并稳定蛋白质。此外,它们促进这些蛋白质在尿素变性后类似于GroE和Hsp90的功能重折叠。与解折叠和重折叠蛋白的相互作用似乎都不依赖于ATP。