Department of Molecular Microbiology and Genetics, Institute of Microbiology and Genetics, Goettingen Center for Molecular Biosciences, University of Goettingen, 37077 Goettingen, Germany.
Department of Microbial Cell Biology, Institute of Microbiology and Genetics, Goettingen Center for Molecular Biosciences, University of Goettingen, 37077 Goettingen, Germany.
Proc Natl Acad Sci U S A. 2023 Aug 29;120(35):e2305049120. doi: 10.1073/pnas.2305049120. Epub 2023 Aug 21.
The conserved eight-subunit COP9 signalosome (CSN) is required for multicellular fungal development. The CSN deneddylase cooperates with the Cand1 exchange factor to control replacements of E3 ubiquitin cullin RING ligase receptors, providing specificity to eukaryotic protein degradation. CSN assembles through a heptameric pre-CSN, which is activated by integration of the catalytic CsnE deneddylase. Combined genetic and biochemical approaches provided the assembly choreography within a eukaryotic cell for native fungal CSN. Interactomes of functional GFP-Csn subunit fusions in pre-CSN deficient fungal strains were compared by affinity purifications and mass spectrometry. Two distinct heterotrimeric CSN subcomplexes were identified as pre-CSN assembly intermediates. CsnA-C-H and CsnD-F-G form independently of CsnB, which connects the heterotrimers to a heptamer and enables subsequent integration of CsnE to form the enzymatically active CSN complex. Surveillance mechanisms control accurate Csn subunit amounts and correct cellular localization for sequential assembly since deprivation of Csn subunits changes the abundance and location of remaining Csn subunits.
保守的八亚基 COP9 信号体(CSN)是多细胞真菌发育所必需的。CSN 的去连酶与 Cand1 交换因子合作,控制 E3 泛素连接酶受体的替换,为真核蛋白降解提供特异性。CSN 通过七聚体前 CSN 组装,该七聚体通过整合催化 CsnE 去连酶而被激活。结合遗传和生化方法,为天然真菌 CSN 在真核细胞内提供了组装编舞。通过亲和纯化和质谱比较了功能 GFP-Csn 亚基融合在缺乏前 CSN 的真菌菌株中的互作组。鉴定出两种不同的异三聚体 CSN 亚复合物作为前 CSN 组装中间体。CsnA-C-H 和 CsnD-F-G 独立于 CsnB 形成,CsnB 将异三聚体连接到七聚体上,并使随后的 CsnE 整合形成具有酶活性的 CSN 复合物。由于剥夺 Csn 亚基会改变剩余 Csn 亚基的丰度和位置,因此监视机制控制着准确的 Csn 亚基数量和正确的细胞定位,以进行顺序组装。