Biology Reference
In-Depth Information
78. Patwari P, Lee RT. An expanded family of arrestins regulate metabolism. Trends
Endocrinol Metab . 2012;23:216 - 222.
79. Rauch S, Martin-Serrano J. Multiple interactions between the ESCRT machinery and
arrestin-related proteins:
implications
for PPXY-dependent budding.
J Virol .
2011;85:3546- 3556.
80. Nabhan JF, Hu R, Oh RS, Cohen SN, Lu Q. Formation and release of arrestin
domain-containing protein 1-mediated microvesicles (ARMMs) at plasma membrane
by recruitment of TSG101 protein. Proc Natl Acad Sci USA . 2012;109:4146 - 4151.
81. Draheim KM, Chen HB, Tao Q, Moore N, Roche M, Lyle S. ARRDC3 suppresses
breast cancer progression by negatively regulating integrin beta4. Oncogene .
2010;29:5032- 5047.
82. Nabhan JF, Pan H, Lu Q. Arrestin domain-containing protein 3 recruits the NEDD4
E3 ligase to mediate ubiquitination of the beta2-adrenergic receptor. EMBO Rep .
2010;11:605- 611.
83. Patwari P, ChutkowWA, Cummings K, et al. Thioredoxin-independent regulation of
metabolism by the alpha-arrestin proteins. J Biol Chem . 2009;284:24996- 25003.
84. Oka S, Masutani H, Liu W, et al. Thioredoxin-binding protein-2-like inducible mem-
brane protein is a novel vitamin D3 and peroxisome proliferator-activated receptor
(PPAR)gamma ligand target protein that regulates PPARgamma signaling. Endocrinol-
ogy . 2006;147:733 - 743.
85. Becuwe M, Vieira N, Lara D, et al. Amolecular switch on an arrestin-like protein relays
glucose signaling to transporter endocytosis. J Cell Biol . 2012;196:247- 259.
86. Nikko E, Sullivan JA, Pelham HR. Arrestin-like proteins mediate ubiquitination and
endocytosis of the yeast metal transporter Smf1. EMBO Rep . 2008;9:1216- 1221.
87. Herranz S, Rodriguez JM, Bussink HJ, et al. Arrestin-related proteins mediate pH sig-
naling in fungi. Proc Natl Acad Sci USA . 2005;102:12141- 12146.
88. Herrador A, Herranz S, Lara D, Vincent O. Recruitment of the ESCRT machinery to
a putative seven-transmembrane-domain receptor is mediated by an arrestin-related
protein. Mol Cell Biol . 2010;30:897- 907.
89. Nikko E, PelhamHR. Arrestin-mediated endocytosis of yeast plasma membrane trans-
porters. Traffic . 2009;10:1856- 1867.
90. Prabhu Y, Eichinger L. The Dictyostelium repertoire of seven transmembrane domain
receptors. Eur J Cell Biol . 2006;85:937 - 946.
91. Guetta D, Langou K, Grunwald D, Klein G, Aubry L. FYVE-dependent endosomal
targeting of an arrestin-related protein in amoeba. PLoS One . 2010;5:e15249.
92. Journet A, Klein G, Brugi`re S, et al. Investigating the macropinocytic proteome of
Dictyostelium amoebae
by
high-resolution mass
spectrometry.
Proteomics .
2012;12:241- 245.
93. Seaman MN, McCaffery JM, Emr SD. A membrane coat complex essential for
endosome-to-Golgi retrograde transport in yeast. J Cell Biol . 1998;142:665- 681.
94. Arighi CN, Hartnell LM, Aguilar RC, Haft CR, Bonifacino JS. Role of the mamma-
lian retromer in sorting of the cation-independent mannose 6-phosphate receptor.
J Cell Biol . 2004;165:123- 133.
95. Norwood SJ, Shaw DJ, Cowieson NP, Owen DJ, Teasdale RD, Collins BM. Assem-
bly and solution structure of the core retromer protein complex. Traffic . 2011;
12:56- 71.
96. Seaman MN. Identification of a novel conserved sorting motif required for retromer-
mediated endosome-to-TGN retrieval. J Cell Sci . 2007;120:2378- 2389.
97. Collins BM. The structure and function of the retromer protein complex. Traffic .
2008;9:1811- 1822.
98. Hierro A, Rojas AL, Rojas R, et al. Functional architecture of the retromer cargo-
recognition complex. Nature . 2007;449:1063- 1067.
 
 
Search WWH ::




Custom Search