School of Basic Medicine, Jiamusi University, Jiamusi, Heilongjiang 154007, China.
The First Affiliated Hospital, Jiamusi University, Jiamusi, Heilongjiang 154003, China.
Biochim Biophys Acta Proteins Proteom. 2022 Jun 1;1870(6):140792. doi: 10.1016/j.bbapap.2022.140792. Epub 2022 May 13.
As a misfolding protein, almost all of F508del-CFTR is degraded by the ubiquitin-proteasome system before its maturation, which results in no membrane expression of cystic fibrosis transmembrane conductance regulator (CFTR) and therefore, no chloride secretion across epithelial cells of cystic fibrosis (CF) patients. The conjugation of ubiquitin (Ub) chains to protein substrates is necessary for the proteasomal degradation of F508del-CFTR. Ubiquitin contains seven lysine (K) residues, all of which can be conjugated to one another, forming poly-ubiquitin chains on substrates, either by mixing together, or by only one type of lysine providing sorting signals for different pathways. Here, we report that four lysine-linked poly-Ub chains (LLPUCs) were involved in F508del-CFTR biogenesis: LLPUCs linked by K11 or K48 facilitated F508del-CFTR degradation, whereas the other two linked by K63 and K33 protected F508del-CFTR from degradation. LLPUC K11 is more potent for F508del-CFTR degradation than K48. F508del-CFTR utilizes four specific lysine-linked poly-Ub chains during its biogenesis for opposite destiny through different identification by proteasomal shuttle protein or receptors. These findings provide new insights into the CF pathogenesis and are expected to facilitate the development of therapies for this devastating disease.
作为一种错误折叠的蛋白质,几乎所有 F508del-CFTR 在成熟之前都会被泛素-蛋白酶体系统降解,导致囊性纤维化跨膜电导调节剂 (CFTR) 没有在细胞膜上表达,因此,囊性纤维化 (CF) 患者的上皮细胞没有氯离子分泌。泛素 (Ub) 链与蛋白质底物的连接对于 F508del-CFTR 的蛋白酶体降解是必要的。泛素含有七个赖氨酸 (K) 残基,所有这些残基都可以相互连接,在底物上形成多泛素链,要么通过混合在一起,要么只有一种类型的赖氨酸为不同途径提供分类信号。在这里,我们报告了四种赖氨酸连接的多泛素链 (LLPUC) 参与了 F508del-CFTR 的生物发生:通过 K11 或 K48 连接的 LLPUC 促进了 F508del-CFTR 的降解,而通过 K63 和 K33 连接的另外两种 LLPUC 则保护了 F508del-CFTR 免受降解。与 K48 相比,LLPUC K11 更有效地促进了 F508del-CFTR 的降解。F508del-CFTR 在其生物发生过程中利用了四种特定的赖氨酸连接的多泛素链,通过不同的蛋白酶体穿梭蛋白或受体识别,实现了相反的命运。这些发现为 CF 的发病机制提供了新的见解,并有望促进这种毁灭性疾病治疗方法的发展。