Department of Biochemistry, Emory University School of Medicine, Atlanta, Georgia 30322.
Department of Biochemistry, Emory University School of Medicine, Atlanta, Georgia 30322.
J Biol Chem. 2014 Apr 25;289(17):11630-11641. doi: 10.1074/jbc.M114.555870. Epub 2014 Mar 10.
Prior studies suggested that the core 1 β3-galactosyltransferase (T-synthase) is a specific client of the endoplasmic reticulum chaperone Cosmc, whose function is required for T-synthase folding, activity, and consequent synthesis of normal O-glycans in all vertebrate cells. To explore whether the T-synthase encodes a specific recognition motif for Cosmc, we used deletion mutagenesis to identify a cryptic linear and relatively hydrophobic peptide in the N-terminal stem region of the T-synthase that is essential for binding to Cosmc (Cosmc binding region within T-synthase, or CBRT). Using this sequence information, we synthesized a peptide containing CBRT and found that it directly interacts with Cosmc and also inhibits Cosmc-assisted in vitro refolding of denatured T-synthase. Moreover, engineered T-synthase carrying mutations within CBRT exhibited diminished binding to Cosmc that resulted in the formation of inactive T-synthase. To confirm the general recognition of CBRT by Cosmc, we performed a domain swap experiment in which we inserted the stem region of the T-synthase into the human β4GalT1 and found that the CBRT element can confer Cosmc binding onto the β4GalT1 chimera. Thus, CBRT is a unique recognition motif for Cosmc to promote its regulation and formation of active T-synthase and represents the first sequence-specific chaperone recognition system in the ER/Golgi required for normal protein O-glycosylation.
先前的研究表明,核心 1 β3-半乳糖基转移酶(T-合成酶)是内质网伴侣蛋白 Cosmc 的特定客户,其功能对于 T-合成酶的折叠、活性以及随后在所有脊椎动物细胞中正常 O-聚糖的合成是必需的。为了探索 T-合成酶是否编码 Cosmc 的特定识别基序,我们使用缺失突变来鉴定 T-合成酶 N 端茎区中隐藏的线性和相对疏水性肽,该肽对于与 Cosmc 的结合(T-合成酶中的 Cosmc 结合区,或 CBRT)是必需的。利用这一序列信息,我们合成了一个包含 CBRT 的肽,并发现它直接与 Cosmc 相互作用,并且还抑制 Cosmc 辅助的变性 T-合成酶体外重折叠。此外,携带 CBRT 内突变的工程化 T-合成酶与 Cosmc 的结合减少,导致无活性 T-合成酶的形成。为了确认 CBRT 被 Cosmc 普遍识别,我们进行了结构域交换实验,其中我们将 T-合成酶的茎区插入到人β4GalT1 中,发现 CBRT 元件可以将 Cosmc 结合赋予β4GalT1 嵌合体。因此,CBRT 是 Cosmc 促进其调节和形成活性 T-合成酶的独特识别基序,代表了内质网/高尔基体中正常蛋白质 O-糖基化所必需的第一个序列特异性伴侣蛋白识别系统。