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119. Wassmer T, Attar N, Harterink M, et al. The retromer coat complex coordinates
endosomal sorting and dynein-mediated transport, with carrier recognition by the
trans-Golgi network. Dev Cell . 2009;17:110- 122.
120. Popoff V, Mardones GA, Bai SK, et al. Analysis of articulation between clathrin and
retromer in retrograde sorting on early endosomes. Traffic . 2009;10:1868- 1880.
121. Popoff V, Mardones GA, Tenza D, et al. The retromer complex and clathrin define an
early endosomal retrograde exit site. J Cell Sci . 2007;120:2022- 2031.
122. Shi A, Sun L, Banerjee R, Tobin M, Zhang Y, Grant BD. Regulation of endosomal
clathrin and retromer-mediated endosome to Golgi retrograde transport by the
J-domain protein RME-8. EMBO J . 2009;28:3290- 3302.
123. Chin LS, Raynor MC, Wei X, Chen HQ, Li L. Hrs interacts with sorting nexin 1 and
regulates degradation of epidermal growth factor receptor. J Biol Chem . 2001;276:
7069- 7078.
124. Perez-Victoria FJ, Mardones GA, Bonifacino JS. Requirement of the human GARP
complex for mannose 6-phosphate-receptor-dependent sorting of cathepsin D to lyso-
somes. Mol Biol Cell . 2008;19:2350 - 2362.
125. Pellegrini-Calace M, Tramontano A. Identification of a novel putative mitogen-
activated kinase cascade on human chromosome 21 by computational approaches. Bio-
informatics (Oxford, England) . 2006;22:775 - 778.
126. Benjamin JJ, Poon PP, Drysdale JD, Wang X, Singer RA, Johnston GC. Dysregulated
Arl1, a regulator of post-Golgi vesicle tethering, can inhibit endosomal transport and
cell proliferation in yeast. Mol Biol Cell . 2011;22:2337- 2347.
127. Siniossoglou S, Peak-Chew SY, Pelham HR. Ric1p and Rgp1p form a complex that
catalyses nucleotide exchange on Ypt6p. EMBO J . 2000;19:4885- 4894.
128. Salemme FR, Miller MD, Jordan SR. Structural convergence during protein evolu-
tion. Proc Natl Acad Sci USA . 1977;74:2820- 2824.
129. Anantharaman V, Aravind L, Koonin EV. Emergence of diverse biochemical activities
in evolutionarily conserved structural scaffolds of proteins. Curr Opin Chem Biol .
2003;7:12 - 20.
130. Alvarez CE. On the origins of arrestin and rhodopsin. BMC Evol Biol . 2008;8:222.
131. Skegro D, Pulvermuller A, Krafft B, et al. N-terminal and C-terminal domains of
arrestin both contribute in binding to rhodopsin. Photochem Photobiol . 2007;83:
385- 392.
132. Fjorback AW, Seaman M, Gustafsen C, et al. Retromer binds the FANSHY sorting
motif in SorLA to regulate amyloid precursor protein sorting and processing.
J Neurosci . 2012;32:1467 - 1480.
133. Vieira SI, Rebelo S, Esselmann H, et al. Retrieval of the Alzheimer's amyloid precursor
protein from the endosome to the TGN is S655 phosphorylation state-dependent and
retromer-mediated. Mol Neurodegener . 2010;5:40.
134. Shukla AK, Kim J, Ahn S, et al. Arresting a transient receptor potential (TRP) channel:
beta-arrestin 1 mediates ubiquitination and functional down-regulation of TRPV4.
J Biol Chem . 2010;285:30115 - 30125.
135. Simonin A, Fuster D. Nedd4-1 and beta-arrestin-1 are key regulators of Na þ /H þ
exchanger 1 ubiquitylation, endocytosis, and function.
J Biol Chem . 2010;285:
38293- 38303.
136. Andoh T, Hirata Y, Kikuchi A. PY motifs of Rod1 are required for binding to Rsp5
and for drug resistance. FEBS Lett . 2002;525:131- 134.
137. Shenoy SK, Barak LS, Xiao K, et al. Ubiquitination of beta-arrestin links seven-
transmembrane receptor endocytosis and ERK activation. J Biol Chem . 2007;282:
29549- 29562.
138. Palczewski K, Pulvermuller A, Buczylko J, Gutmann C, Hofmann KP. Binding of ino-
sitol phosphates to arrestin. FEBS Lett . 1991;295:195- 199.
 
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