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1 acks the ability to inhibit the formation of CopII coated vesicles.
2 e exported from the endoplasmic reticulum by COPII coated vesicles.
3 n the early secretory pathway is mediated by COPII-coated vesicles.
4 ase the range of cargo accommodated by human COPII-coated vesicles.
5 ds the range of cargo proteins packaged into COPII-coated vesicles.
6 mplex, which comprises the coat framework of COPII-coated vesicles.
7 lated sorting of an ER membrane protein into COPII-coated vesicles.
8 oprotein (VSVG) protein, a classic marker of COPII-coated vesicles.
9 r are transported to the Golgi apparatus via COPII-coated vesicles.
10 s to the ER and is selectively packaged into COPII-coated vesicles.
11 d that this assembly promotes the budding of COPII-coated vesicles.
12 solic adaptor in mediating SAC1 transport in COPII-coated vesicles.
13 ently captured into coat protein complex II (COPII)-coated vesicles.
14 d integral membrane protein that traffics in COPII-coated vesicles and localizes to the early secreto
15                     We provide evidence that COPII-coated vesicles and the ER-Golgi fusion machinery
16 o post-ER transport vesicles, different from COPII-coated vesicles and those involved in traffic of V
17 artments including the nuclear pore complex, COPII-coated vesicles, and inside the nucleus as a trans
18                                   ER-derived COPII-coated vesicles are conventionally targeted to the
19                                              COPII-coated vesicles are delivered to the early Golgi v
20                                 Formation of COPII-coated vesicles at the endoplasmic reticulum (ER)
21 a1p exits the endoplasmic reticulum (ER) via COPII-coated vesicles bound for the Golgi.
22                                              COPII-coated vesicles carry proteins from the endoplasmi
23           Endoplasmic Reticulum (ER)-derived COPII coated vesicles constitutively transport secretory
24                                              COPII-coated vesicles export newly synthesized proteins
25 ukaryotic cells packages cargo proteins into COPII-coated vesicles for transport from the endoplasmic
26                                              COPII-coated vesicles form on the endoplasmic reticulum
27 own to be involved in both the initiation of COPII-coated vesicle formation and scission of the nasce
28   LMAN1 deficiency had no apparent effect on COPII-coated vesicle formation in an in vitro assay.
29 ation and therefore independent of canonical COPII-coated vesicle function.
30                                              COPII-coated vesicles mediate the transport of newly syn
31 pecific uptake into coat protein complex II (COPII)-coated vesicles of secretory and of vesicle targe
32 atory element-binding proteins (SREBPs) into COPII-coated vesicles on endoplasmic reticulum (ER) memb
33 ion of the Erv25p or the Emp24p protein into COPII-coated vesicles requires expression of both subuni
34 -VLDLs) are too big to fit into conventional COPII-coated vesicles, so how are these bulky cargoes ex
35                                              COPII coated vesicles that have budded from the ER are f
36  find that rsec22b and rbet1 are enriched in COPII-coated vesicles that bud from the ER and presumabl
37 ging, we demonstrate the existence of mobile COPII-coated vesicles that completely encapsulate the ca
38      SEC23A is an essential component of the COPII-coated vesicles that transport secretory proteins
39                             Coat protein II (COPII)-coated vesicles transport proteins and lipids fro
40 r subunits and the appearance of the coat in COPII-coated vesicles, we present a model for COPII coat
41 ulum, Sec13 is involved in the biogenesis of COPII-coated vesicles, whereas at the NPC its function i
42 teins exit the endoplasmic reticulum (ER) in COPII-coated vesicles, whereas resident and misfolded pr
43 ed for secretion are packaged in the ER into COPII-coated vesicles, which subsequently fuse to form t

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