Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 30 references without a DOI — listed, not checked
no DOI — not checkedRothman, J. E. & Wieland, F. T. Protein sorting by transport vesicles. Science 272, 227–234 (1996).
no DOI — not checkedSchekman, R. & Orci, L. Coat proteins and vesicle budding. Science 271, 1526–1533 (1996).
no DOI — not checkedAridor, M., Bannykh, S., Rowe, T. & Balch, W. E. Sequential coupling between CopII and CopI vesicle coats in endoplasmic reticulum to Golgi transport. J. Cell Biol. 131, 1–19 (1995).
no DOI — not checkedPluttner, H., Davidson, H. W., Saraste, J. & Balch, W. E. Morphological analysis of protein transport from the ER to Golgi membranes in digitonin-permeabilized cells: role of the p58 containing compartment. J. Cell Biol. 119, 1097–1116 (1992).
no DOI — not checkedSaraste, J. & Svensson, K. Distribution of the intermediate elements operating in ER to Golgi transport. J. Cell Sci. 100, 415–430 (1991).
no DOI — not checkedSaraste, J. & Kuismanen, E. Pathways of protein sorting and membrane traffic between the rough endoplasmic reticulum and the Golgi complex. Semin. Cell Biol. 3, 343–355 (1992).
no DOI — not checked7. Krijnse-Locker, J., Ericsson, M., Rottier, P. J. & Griffiths, G. Characterization of the budding compartment of mouse hepatitis virus: Evidence that transport from the RER to the Golgi complex requires only one vesicular transport step. J. Cell Biol. 124, 55–70 (1994).
no DOI — not checkedStinchcombe, J. C., Nomoto, H., Cutler, D. F. & Hopkins, C. R. Anterograde and retrograde traffic between the rough endoplasmic reticulum and the Golgi complex. J. Cell Biol. 131, 1387–1401 (1995).
no DOI — not checkedPrasher, D. C., Eckenrode, V. K., Ward, W. W., Prendergast, F. G. & Cormier, M. J. Primary structure of the Aequorea victoria green-fluorescent protein. Gene 111, 229–233 (1992).
no DOI — not checkedChalfie, M., Tu, Y., Euskirchen, G., Ward, W. W. & Prasher, D. C. Green fluorescent protein as a marker for gene expression. Science 263, 802–805 (1994).
no DOI — not checkedKreis, T. E. & Lodish, H. F. Oligomerization is essential for transport of vesicular stomatitis viral glycoprotein to the cell surface. Cell 46, 929–937 (1986).
no DOI — not checkedBeckers, C. J., Keller, D. S. & Balch, W. E. Semi-intact cells permeable to macromolecules: Use in reconstitution of protein transport from the endoplasmic reticulum to the Golgi complex. Cell 50, 523–534 (1987).
no DOI — not checkedBergmann, J. E. Using temperature-sensitive mutants of VSV to study membrane protein biogenesis. Methods Cell Biol. 32, 85–110 (1989).
no DOI — not checkedSchweizer, A., Fransen, J. A. M., Bachi, T., Ginsel, L. & Hauri, H. -P. Identification, by a monoclonal antibody, of a 53 kD protein associated with a tubulo-vesicular compartment at the cis-side of the Golgi apparatus. J. Cell Biol. 107, 1643–1653 (1988).
no DOI — not checkedLippincott-Schwartz, J., Cole, N. B., Marotta, A., Conrad, P. A. & Bloom, G. S. Kinesin is the motor for microtubule-mediated Golgi-to-ER membrane traffic. J. Cell Biol. 128, 293–306 (1995).
no DOI — not checkedPepperkok, R.et al. βCOP is essential for biosynthetic membrane transport from the endoplasmic reticulum to the Golgi complex in vivo. Cell 74, 71–82 (1993).
no DOI — not checkedPeter, F., Plutner, H., Zhu, H., Kreis, T. E. & Balch, W. E. β-COP is essential for transport of protein from the endoplasmic reticulum to the Golgi in vitro. J. Cell Biol. 122, 1155–1168 (1993).
no DOI — not checkedBalch, W. E., McCaffery, J. M., Pluttner, H. & Farquhar, M. G. Vesicular stomatitis virus is sorted and concentrated upon exit from the endoplasmic reticulum. Cell 76, 841–852 (1994).
no DOI — not checkedBannykh, S. I., Rowe, T. & Balch, W. E. The organization of endoplasmic reticulum export complexes. J. Cell Biol. 135, 19–35 (1996).
no DOI — not checkedKuismanen, E. & Saraste, J. Low temperature-induced transport blocks as tools to manipulate membrane traffic. Methods Cell Biol. 32, 257–274 (1989).
no DOI — not checkedHauri, H. -P. & Schweizer, A. The endoplasmic reticulum–Golgi intermediate compartment. Curr. Opin. Cell Biol. 4, 600–608 (1992).
no DOI — not checkedLotti, L. V., Torrisi, M. R., Pascale, M. C. & Bonatti, S. Immunocytochemical analysis of the transfer of vesicular stomatitis virus G glycoprotein from the intermediate compartment to the Golgi complex. J. Cell Biol. 118, 43–50 (1992).
no DOI — not checkedWalker, R. A. & Sheetz, M. P. Cytoplasmic microtubule-associated motors. Annu. Rev. Biochem. 62, 429–451 (1993).
no DOI — not checkedCole, N. B.et al. Diffusional mobility of Golgi proteins in membranes of living cells. Science 273, 797–801 (1996).
no DOI — not checkedSchroer, T. A., Bingham, J. B. & Gill, S. R. Actin-related protein 1 and cytoplasmic dynein-based motility: What's the connection? Trends Cell Biol. 6, 212–215 (1996).
no DOI — not checkedGaglio, T.et al. Opposing motor activities are required for the organization of the mammalian mitotic spindle pole. J. Cell Biol. 135, 399–414 (1996).
no DOI — not checkedEcheverri, C. J., Paschal, B. B., Vaughan, K. T. & Vallee, R. B. Molecular characterization of the 50-kD subunit of dynactin reveals function for the complex in chromosome alignment and spindle organization during mitosis. J. Cell Biol. 132, 617–633 (1996).
no DOI — not checkedBurkhardt, J. K., Echeverri, C. J. & Vallee, R. B. Overexpression of the p50 subunit of dynactin perturbs the positioning of the Golgi apparatus and endosomes. Mol. Biol. Cell 6, 266a (1995).
no DOI — not checkedGallione, C. J. & Rose, J. K. Asingle amino acid substitution in a hydrophobic domain causes temperature-sensitive cell-surface transport of a mutant viral glycoprotein. J. Virol. 54, 374–382 (1985).
no DOI — not checkedVaisberg, E. A., Grissom, P. M. & McIntosh, J. R. Mammalian cells express three distinct dynein heavy chains that are localized to different cytoplasmic organelles. J. Cell Biol. 133, 831–842 (1996).
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