Azakami Hiroyuki, Uehara Masayoshi, Matsuo Ryohei, Tsurunaga Yuta, Yamashita Yuichiro, Usui Masakatsu, Kato Akio
a Department of Biological Chemistry, Faculty of Agriculture , Yamaguchi University , Yamaguchi , Japan.
Biosci Biotechnol Biochem. 2014;78(7):1263-9. doi: 10.1080/09168451.2014.918486. Epub 2014 Jun 17.
Cne1p is a yeast homolog of calnexin, which is a constituent of endoplasmic reticulum (ER)-associated protein quality control system in mammals. Cne1p may be involved in the degradation of misfolded lysozymes in Saccharomyces cerevisiae. To test this, c-Myc-tagged lysozymes were expressed in CNE1-deficient S. cerevisiae. The expression and secretion of an unstable lysozyme mutant G49N/D66H were enhanced and its intracellular localization was changed in the CNE1-deficient strain. Furthermore, when Cne1p was co-expressed with unstable lysozyme mutants (G49N/D66H, G49N/C76A, and K13D/G49N), its affinity to the misfolded mutant proteins was revealed by co-immunoprecipitation. The interaction with Cne1p was abrogated by the addition of tunicamycin, an inhibitor of N-glycosylation, indicating that N-linked carbohydrates might be necessary for protein binding to Cne1p. These results suggest that in yeasts, Cne1p interacts with misfolded lysozyme proteins possibly causing their retention in the ER and subsequent elimination via ER-associated degradation.
Cne1p是钙连蛋白的酵母同源物,钙连蛋白是哺乳动物内质网(ER)相关蛋白质质量控制系统的一个组成部分。Cne1p可能参与酿酒酵母中错误折叠的溶菌酶的降解。为了验证这一点,在缺乏CNE1的酿酒酵母中表达了带有c-Myc标签的溶菌酶。在缺乏CNE1的菌株中,不稳定的溶菌酶突变体G49N/D66H的表达和分泌增强,其细胞内定位发生改变。此外,当Cne1p与不稳定的溶菌酶突变体(G49N/D66H、G49N/C76A和K13D/G49N)共表达时,通过免疫共沉淀揭示了其与错误折叠的突变蛋白的亲和力。添加N-糖基化抑制剂衣霉素可消除与Cne1p的相互作用,这表明N-连接的碳水化合物可能是蛋白质与Cne1p结合所必需的。这些结果表明,在酵母中,Cne1p与错误折叠的溶菌酶蛋白相互作用,可能导致它们在内质网中滞留,并随后通过内质网相关降解被清除。