首页> 外文期刊>Journal of cellular biochemistry. >Increased expression and altered subunit composition of proteasomes induced by continuous proteasome inhibition establish apoptosis resistance and hyperproliferation of Burkitt lymphoma cells.
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Increased expression and altered subunit composition of proteasomes induced by continuous proteasome inhibition establish apoptosis resistance and hyperproliferation of Burkitt lymphoma cells.

机译:通过持续的蛋白酶体抑制作用诱导的蛋白酶体的表达增加和亚单位组成的改变建立了Burkitt淋巴瘤细胞的凋亡抗性和过度增殖。

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摘要

The proteasome is the main protease for extralysosomal protein degradation in eukaryotic cells, and constitutes a sophisticated high molecular mass proteinase complex underlying a tightly coordinated expression and assembly of multiple subunits and subcomplexes. Here we show that continuous inhibition of proteasomal chymotrypsin-like peptidase activity by the proteasome inhibitor bortezomib induces in human Namalwa Burkitt lymphoma cells increased de novo biogenesis of proteasomes accompanied by increased expression of the proteasome maturation protein POMP, increased expression of 19S-20S-19S proteasomes, and abrogation of expression of beta 1i, beta 2i and beta 5i immunosubunits and PA28 in favor of increased expression of constitutive proteolytic beta1, beta2 and beta 5 subunits and 19S regulatory complexes. These alterations of proteasome expression and subunit composition are accompanied by an increase in proteasomal caspase-like, trypsin-like and chymotrypsin-like peptidase activities, not inhibitable by high doses of bortezomib. Cells harboring these proteasomal alterations display rapid proliferation and cell cycle progression, and acquire resistance to apoptosis induced by proteasome inhibitors, gamma-irradiation and staurosporine. This acquired apoptosis resistance is accompanied by de novo expression of anti-apoptotic Hsp27 protein and the loss of ability to accumulate and stabilize pro-apoptotic p53 protein. Thus, increased expression, altered subunit composition and increased activity of proteasomes constitute a hitherto unknown adaptive and autoregulatory feedback mechanism to allow cells to survive the lethal challenge of proteasome inhibition and to establish a hyperproliferative and apoptosis-resistant phenotype.
机译:蛋白酶体是真核细胞中体外蛋白降解的主要蛋白酶,并构成复杂的高分子量蛋白酶复合物,其紧密协调地表达和组装了多个亚基和亚复合物。在这里,我们显示蛋白酶体抑制剂bortezomib对人Namalwa Burkitt淋巴瘤细胞的蛋白酶体抑制剂糜蛋白酶样肽酶活性的持续抑制增加了蛋白酶体的新生生物生成,并伴随着蛋白酶体成熟蛋白POMP的表达增加,19S-20S-19S的表达增加蛋白酶体,并废除beta 1i,beta 2i和beta 5i免疫亚基和PA28的表达,有利于增加组成型蛋白水解beta1,beta2和beta 5的亚基和19S调节复合物的表达。蛋白酶体表达和亚基组成的这些改变伴随着蛋白酶体半胱天冬酶样,胰蛋白酶样和胰凝乳蛋白酶样肽酶活性的增加,而高剂量的硼替佐米不能抑制这种活性。带有这些蛋白酶体改变的细胞显示出快速的增殖和细胞周期进程,并获得了对蛋白酶体抑制剂,γ射线和星形孢菌素诱导的凋亡的抵抗力。这种获得的细胞凋亡抗性伴随着抗凋亡Hsp27蛋白的从头表达,以及丧失积累和稳定促凋亡p53蛋白的能力。因此,增加的表达,改变的蛋白酶体亚基组成和增加的活性构成了迄今未知的适应性和自动调节的反馈机制,以使细胞在蛋白酶体抑制的致命挑战中存活并建立过度增殖和抗凋亡的表型。

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