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Receptor-mediated endocytosis: concepts emerging from the LDL receptor system
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Goldstein J.L., Brown M.S., Anderson D.W., Russell R.G.W., and Schneider W.J. Receptor-mediated endocytosis: concepts emerging from the LDL receptor system. Annu. Rev. Cell Biol. 1 (1985) 1-39
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The low density lipoprotein receptor
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Schneider W.J. The low density lipoprotein receptor. Biochim. Biophys. Acta 988 (1989) 303-317
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Posttranslational processing of the LDL receptor and its genetic disruption in familial hypercholesterolemia
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Tolleshaug H., Goldstein J.L., Schneider W.J., and Brown M.S. Posttranslational processing of the LDL receptor and its genetic disruption in familial hypercholesterolemia. Cell 30 (1982) 715-724
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0021742599
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The human LDL receptor: a cysteine-rich protein with multiple Alu sequences in its mRNA
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Yamamoto T., Davis C.G., Brown M.S., Schneider W.J., Casey M.L., Goldstein J.L., and Russell D.W. The human LDL receptor: a cysteine-rich protein with multiple Alu sequences in its mRNA. Cell 39 (1984) 27-38
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5
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0023750089
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Mutational analysis of the ligand binding domain of the low density lipoprotein receptor
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Esser V., Limbird L.E., Brown M.S., Goldstein J.L., and Russell D.W. Mutational analysis of the ligand binding domain of the low density lipoprotein receptor. J. Biol. Chem. 263 (1988) 13282-13290
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The low density lipoprotein receptor. Identification of amino acids in cytoplasmic domain required for rapid endocytosis
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Davis C.G., van Driel I.R., Russell D.W., Brown M.S., and Goldstein J.L. The low density lipoprotein receptor. Identification of amino acids in cytoplasmic domain required for rapid endocytosis. J. Biol. Chem. 262 (1987) 4075-4082
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0029025754
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Three different rearrangements in a single intron truncate sterol regulatory element binding protein-2 and produce sterol-resistant phenotype in three cell lines
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Yang J., Brown M.S., Ho Y.K., and Goldstein J.L. Three different rearrangements in a single intron truncate sterol regulatory element binding protein-2 and produce sterol-resistant phenotype in three cell lines. J. Biol. Chem. 270 (1995) 12152-12161
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0022536609
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Exon-Alu recombination deletes 5 kilobases from the low density lipoprotein receptor gene, producing a null phenotype in familial hypercholesterolemia
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Lehrman M.A., Russell D.W., Goldstein J.L., and Brown M.S. Exon-Alu recombination deletes 5 kilobases from the low density lipoprotein receptor gene, producing a null phenotype in familial hypercholesterolemia. Proc. Natl. Acad. Sci. USA 83 (1986) 3679-3683
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9
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0023140956
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The Lebanese allele at the LDL receptor locus: nonsense mutation produces truncated receptor that is retained in endoplasmic reticulum
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Lehrman M.A., Schneider W.J., Brown M.S., Davis C.G., Elhammer A., Russell D.W., and Goldstein J.L. The Lebanese allele at the LDL receptor locus: nonsense mutation produces truncated receptor that is retained in endoplasmic reticulum. J. Biol. Chem. 262 (1987) 401-410
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10
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Deletion in cysteine-rich region of LDL receptor impedes transport to cell surface in WHHL rabbit
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Yamamoto T., Bishop R.W., Brown M.S., Goldstein J.L., and Russell D.W. Deletion in cysteine-rich region of LDL receptor impedes transport to cell surface in WHHL rabbit. Science 232 (1986) 1230-1237
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Analysis of a mutant strain of human fibroblasts with a defect in the internalization of receptor-bound low density lipoprotein
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Brown M.S., and Goldstein J.L. Analysis of a mutant strain of human fibroblasts with a defect in the internalization of receptor-bound low density lipoprotein. Cell 9 (1976) 663-674
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Surface location and high affinity for calcium of a 500 Kd liver membrane protein closely related to the LDL-receptor suggest a physiological role as lipoprotein receptor
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Herz J., Hamann U., Rogne S., Myklebost O., Gausepohl H., and Stanley K.K. Surface location and high affinity for calcium of a 500 Kd liver membrane protein closely related to the LDL-receptor suggest a physiological role as lipoprotein receptor. EMBO J. 7 (1988) 4119-4127
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Structures and functions of multiligand lipoprotein receptors: macrophage scavenger receptors and LDL receptor-related protein (LRP)
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Krieger M., and Herz J. Structures and functions of multiligand lipoprotein receptors: macrophage scavenger receptors and LDL receptor-related protein (LRP). Annu. Rev. Biochem. 63 (1994) 601-637
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Lipoprotein and receptor interactions in vivo
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Rabbit very low density lipoprotein receptor: a low density lipoprotein receptor-like protein with distinct ligand specificity
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Takahashi S., Kawarabayasi Y., Nakai T., Sakai J., and Yamamoto T. Rabbit very low density lipoprotein receptor: a low density lipoprotein receptor-like protein with distinct ligand specificity. Proc. Natl. Acad. Sci. USA 89 (1992) 9252-9256
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The VLDL receptor: wayward brother of the LDL receptor
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Lipoprotein receptors: old relatives and new arrivals
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Schneider W.J., and Nimpf J. Lipoprotein receptors: old relatives and new arrivals. Curr. Opin. Lipidol. 4 (1993) 205-209
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Chicken oocyte growth is mediated by an eight ligand binding repeat member of the LDL receptor family
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Bujo H., Hermann M., Kaderli M.O., Jacobsen L., Sugawara S., Nimpf J., Yamamoto T., and Schneider W.J. Chicken oocyte growth is mediated by an eight ligand binding repeat member of the LDL receptor family. EMBO J. 13 (1994) 5165-5175
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Yolk precursor transport in the laying hen
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0025221479
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Evolution of lipoprotein receptors: the chicken oocyte receptor for VLDL and vitellogenin binds the mammalian ligand, apolipoprotein E
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Steyrer E., Barber D.L., and Schneider W.J. Evolution of lipoprotein receptors: the chicken oocyte receptor for VLDL and vitellogenin binds the mammalian ligand, apolipoprotein E. J. Biol. Chem. 265 (1990) 19575-19581
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Apolipoprotein VLDL-II inhibits lipolysis of triglyceride-rich lipoproteins in the laying hen
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Schneider W.J., Carroll R., Severson D.L., and Nimpf J. Apolipoprotein VLDL-II inhibits lipolysis of triglyceride-rich lipoproteins in the laying hen. J. Lipid Res. 31 (1990) 507-513
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0028071782
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Avian riboflavin binding protein binds to lipoprotein receptors in association with vitellogenin
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MacLachlan I., Nimpf J., and Schneider W.J. Avian riboflavin binding protein binds to lipoprotein receptors in association with vitellogenin. J. Biol. Chem. 269 (1994) 24127-24132
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The chicken oocyte receptor for lipoprotein deposition recognizes alpha2-macroglobulin
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Jacobsen L., Vieira P.M., Schneider W.J., and Nimpf J. The chicken oocyte receptor for lipoprotein deposition recognizes alpha2-macroglobulin. J. Biol. Chem. 270 (1995) 6468-6475
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0028118615
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The somatic cell-specific LDL receptor-related protein of the chicken: close kinship to mammalian LDL receptor gene family members
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Nimpf J., Stifani S., Bilous P.T., and Schneider W.J. The somatic cell-specific LDL receptor-related protein of the chicken: close kinship to mammalian LDL receptor gene family members. J. Biol. Chem. 269 (1994) 212-219
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0027298893
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A gene for a low density lipoprotein receptor-related protein in the nematode Caenorhabditis elegans
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Yochem J., and Greenwald I. A gene for a low density lipoprotein receptor-related protein in the nematode Caenorhabditis elegans. Proc. Natl. Acad. Sci. USA 90 (1993) 4572-4576
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Complete cloning and sequencing of rat gp330/'megalin', a distinctive member of the low density lipoprotein receptor gene family
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Saito A., Pietromonaco S., Kwor-chieh Loo A., and Farquhar M. Complete cloning and sequencing of rat gp330/'megalin', a distinctive member of the low density lipoprotein receptor gene family. Proc. Natl. Acad. Sci. USA 91 (1994) 9725-9729
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