Head-to-tail oligomerization of calsequestrin: a novel mechanism for heterogeneous distribution of endoplasmic reticulum luminal proteins

被引:41
作者
Gatti, G
Trifari, S
Mesaeli, N
Parker, JMR
Michalak, M
Meldolesi, J
机构
[1] Univ Vita Salute San Raffaele, Dept Neurosci, DIBIT, I-20132 Milan, Italy
[2] Ist Sci San Raffaele, I-20132 Milan, Italy
[3] Univ Milan, Dept Pharmacol, I-20129 Milan, Italy
[4] Univ Alberta, Dept Biochem, Edmonton, AB T6G 2H, Canada
[5] Univ Alberta, Canadian Inst Hlth, Res Grp Mol Biol Membrane Prot, Edmonton, AB T6G 2H, Canada
关键词
calsequestrin; condensation; endo/sarcoplasmic reticulum; calsequestrin mutants; L6 and HeLa cells;
D O I
10.1083/jcb.200103002
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Many proteins retained within the endo/sarcoplasmic reticulum (ER/SR) lumen express the COOH-terminal tetrapeptide KDEL, by which they continuously recycle from the Golgi complex; however, others do not express the KDEL retrieval signal. Among the latter is calsequestrin (CSQ), the major Ca2+-binding protein condensed within both the terminal cisternae of striated muscle SR and the ER vacuolar domains of some neurons and smooth muscles. To reveal the mechanisms of condensation and establish whether it also accounts for ER/SR retention of CSQ, we generated a variety of constructs: chimeras with another similar protein, calreticulin (CRT); mutants truncated of COOH- or NH2-terminal domains; and other mutants deleted or point mutated at strategic sites. By transfection in L6 myoblasts and HeLa cells we show here that CSQ condensation in ER-derived vacuoles requires two amino acid sequences, one at the NH2 terminus, the other near the COOH terminus. Experiments with a green fluorescent protein GFP/CSQ chimera demonstrate that the CSQ-rich vacuoles are long-lived organelles, unaffected by Ca2+ depletion, whose almost complete lack of movement may depend on a direct interaction with the ER. CSQ retention within the ER can be dissociated from condensation, the first identified process by which ER luminal proteins assume a heterogeneous distribution. A model is proposed to explain this new process, that might also be valid for other luminal proteins.
引用
收藏
页码:525 / 534
页数:10
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