Schmidt M, Zantopf D, Kraft R, Kostka S, Preissner R, Kloetzel P M
Institut für Biochemie, Medizinische Fakultät der Humboldt Universität zu Berlin (Charité), Monbijoustr. 2, Berlin, 10117, Germany.
J Mol Biol. 1999 Apr 23;288(1):117-28. doi: 10.1006/jmbi.1999.2660.
The maturation of proteases is governed by prosequences. During the biogenesis of the highly oligomeric eukaryotic 20 S proteasome five different prosequence-containing subunits have to be integrated and processed either by autocatalysis or by neighbouring subunits. To analyse the functional impact of proteasomal prosequences during complex formation, the propeptide of the facultative subunit beta1i/LMP2 was truncated to nine amino acid residues or completely deleted. Additionally, the charged residues within the truncated beta1i/LMP2 version were replaced by neutral residues. While deletion did not affect subunit incorporation, the presence of charged residues within the truncated version of the LMP2 propeptide diminished incorporation efficiency, an effect that was restored upon replacement of the charged amino acids against neutral components. During immunoproteasome formation, incorporation and processing of inducible proteasome beta-subunits are cooperative processes. We demonstrate a linear correlation of the levels of beta2i/MECL1 and beta1i/LMP2 within 20 S proteasomes, suggesting a physical interaction to be the molecular basis for the biased incorporation of both subunits. In the absence of beta5i/LMP7, precursor complexes containing unprocessed beta1i/LMP2 accumulated. The contribution of beta5i/LMP7 on the cooperative formation of a homogeneous population of immunoproteasome is therefore most likely based on an acceleration of the beta1i/LMP2 and potentially of beta2i/MECL1 processing kinetics.
蛋白酶的成熟受前导序列调控。在高度寡聚的真核生物20S蛋白酶体的生物合成过程中,五个不同的含前导序列的亚基必须通过自催化或相邻亚基进行整合和加工。为了分析蛋白酶体前导序列在复合物形成过程中的功能影响,兼性亚基β1i/LMP2的前肽被截短至九个氨基酸残基或完全缺失。此外,截短的β1i/LMP2版本中的带电荷残基被中性残基取代。虽然缺失不影响亚基的掺入,但LMP2前肽截短版本中带电荷残基的存在降低了掺入效率,当带电荷氨基酸被中性成分取代时,这种效应得以恢复。在免疫蛋白酶体形成过程中,诱导型蛋白酶体β亚基的掺入和加工是协同过程。我们证明了20S蛋白酶体中β2i/MECL1和β1i/LMP2水平之间的线性相关性,表明物理相互作用是这两个亚基偏向掺入的分子基础。在没有β5i/LMP7的情况下,含有未加工的β1i/LMP2的前体复合物会积累。因此,β5i/LMP7对免疫蛋白酶体同质群体协同形成作用很可能是基于加速β1i/LMP2以及可能加速β2i/MECL1的加工动力学。