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G Ferguson

Publications and source records attributed to G Ferguson.

At least 37 records · Page 2Linked to original sources

Ets domain transcription factor PE1 suppresses human interstitial collagenase promoter activity by antagonizing protein-DNA interactions at a critical AP1 element.

In MC3T3E1 calvarial osteoblasts, fibroblast growth factor receptor (FGFR) signaling elicits multiple transcriptional responses, including upregulation of the interstitial collagenase/matrix metalloproteinase 1 (MMP1) promoter. FGF responsiveness maps to a bipartite Ets/AP1 element at base pairs -123 to -61 in the human MMP1 promoter. Under basal conditions, the MMP1 promoter is repressed in part via protein-DNA interactions at the Ets cognate, and minimally two mechanisms convey MMP1 promoter upregulation by FGF2: (a) transcriptional activation via Fra1/c-Jun containing DNA-protein interactions at the AP1 cognate and (b) derepression of promoter activity regulated by the Ets cognate. To identify osteoblast Ets repressors that potentially participate in gene expression in the osteoblast, we performed reverse transcription-polymerase chain reaction (RT-PCR) analysis of mRNA isolated from MC3T3E1 cells, using degenerative amplimers to the conserved Ets DNA binding domain to survey the Ets genes expressed by these cells. Six distinct Ets mRNAs were identified: Ets2, Fli1, GABPalpha, SAP1, Elk1, and PE1. Of these, only PE1 has extensive homology to the known Ras-regulated Ets transcriptional repressor, ERF. Therefore, we cloned and characterized PE1 cDNA from a mouse brain library and performed functional analysis of this particular Ets family member. A 2 kb transcript was isolated from brain that encodes a approximately 57 kDa protein; the predicted protein contains the known N-terminal Ets domain of PE1 and a novel C-terminal domain with signficant homology to murine ERF. The murine PE1 open reading frame (ORF) is much larger than the previously reported human PE1 ORF. Consistent with this, affinity-purified rabbit anti-mouse PE1 antibody specifically recognizes an approximately 66 kDa protein present only in the nuclear fraction of MC3T3E1 osteoblasts. Recombinant PE1 binds authentic AGGAWG Ets DNA cognates, and transient transfection studies demonstrate that PE1 represses MMP1 promoter activity. Surprisingly, although deletion of the MMP1 Ets cognate at nucleotides -88 to -83 abrogates FGF2 induction, it does not prevent suppression of the AP1-dependent MMP1 promoter by PE1. PE1 regulation maps to the MMP1 promoter region -75 to -61, suggesting that PE1 suppresses transcription via protein-protein interactions with AP1. Consistent with this, recombinant GST-PE1 specifically inhibits the formation of protein-DNA interactions on the MMP1 AP1 site (-72 to -66) when present in an admixture with MC3T3E1 crude nuclear extract. In toto, these data indicate that PE1 participates in the transcriptional regulation of the MMP1 promoter in osteoblasts. As observed with other transcriptional repressors of MMP1 gene expression, transcriptional suppression by PE1 occurs via inhibition of AP1-dependent promoter activity.

Amino Acid Sequence↗

1,3-Calix

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Journal Article↗

trans-Chloro(2-nitrobenzenethiolato-S)bis(triphenylphosphine-P)pallad ium(II) monoacetone solvate

Molecules of the title compound, [PdCl(C(6)H(4)NO(2)S)(PPh(3))(2)]. C(3)H(6)O, exhibit a slight distortion from exact planarity at the Pd atom towards tetrahedral, with P-Pd-P and Cl-Pd-S angles of 174. 98 (3) and 174.19 (3) degrees, respectively. The Pd-Cl and Pd-S bonds are, respectively, long [2.3550 (11) A] and short [2.3020 (12) A] for their types; the S-C bond is also very short [1.744 (4) A]. The solvating acetone molecule is linked to one of the phosphine ligands by means of a C-H.O hydrogen bond.

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Threefold interweaving of (4,4) nets built from R(10)10(58) rings inthe hydrogen-bonded adduct 1,4-diazabicyclo

The 1:1 adduct of 1,4-diazabicyclo[2.2.2]octane and 5-hydroxyisophthalic acid is a salt, [H(C(6)H(12)N(2))](+). [HOC(6)H(3)(COOH)COO](-) or C(6)H(13)N(2)(+).C(8)H(5)O(5)(-). The ions are linked by three types of hydrogen bond, i.e. N-H.O, O-H.O and O-H.N, into continuous two-dimensional (4,4) nets built from a single type of R(10)(10)(58) ring. Six independent sheets of this type make up the structure and these are interwoven in sets of three.

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Adducts of meso and racemic 5,5,7,12,12,14-hexamethyl-1,4,8, 11-tetraazacyclotetradecane with trigonally trisubstituted benzene carboxylic acids: supramolecular structures in one and two dimensions

The meso and racemic forms of 5,5,7,12,12,14-hexamethyl-1,4,8, 11-tetraazacyclotetradecane, C(16)H(36)N(4) (tet-a and tet-b, respectively), form adducts with trigonally trisubstituted benzene carboxylic acids; tet-a-3,5-dinitrobenzoic acid (1/2) (1), tet-a-5-hydroxyisophthalic acid-water (1/1/1) (3) and tet-b-5-hydroxyisophthalic acid-water (1/1/1) (4) are all salts, [C(16)H(38)N(4)](2+).2[C(7)H(3)N(2)O(6)](-) (1) and [C(16)H(38)N(4)](2+).[C(8)H(4)O(5)](2-).H(2)O (3) and (4). The conformations of the [(tet-a)H(2)](2+) and [(tet-b)H(2)](2+) cations are entirely different: [(tet-a)H(2)](2+) is precisely centrosymmetric in (1) and approximately so in (3), while [(tet-b)H(2)](2+) has approximate C(2) symmetry in (4). In each salt the cation forms two intramolecular N-H.N and four intermolecular N-H.O hydrogen bonds. In (1) the supramolecular structure is one-dimensional, a C(2)(2)(13)[R(2)(4)(16)] chain of rings. Compounds (3) and (4) crystallize in space groups P2(1)2(1)2(1) and P2(1)/c, respectively, but the supramolecular structures are very similar: in each, the anions and the water molecules form a C(7)[R(3)(3)(13)] chain of rings, generated in (3) by a 2(1) axis and in (4) by a glide plane. These chains are linked, in both (3) and (4), by cations to form sheets. Adjacent meso cations in (3) are related by a 2(1) axis and adjacent chiral cations in (4) are related by a glide plane.

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meso-5,5,7,12,12,14-Hexamethyl-1,4,8,11-tetraazacyclotetradecane as a building block in supramolecular chemistry; salts formed with 2,2-biphenol, 4,4-thiodiphenol, 4,4-sulfonyldiphenol, 3-and 4-hydroxybenzoic acids, 3,5-dihydroxybenzoic acid and phenylphosphonic acid; supramolecular structures in zero, one, two and three dimensions

The structure of meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane-2,2'-biphenol (1/2), (C16H36N4).(C12H10O2)2 (1), is a salt [C16H38N4]2+.2[HOC6H4C6H4O]-: the cations are centrosymmetric with two protons held within the N4 cavity of the macrocycle by N-H...N hydrogen bonds, and the phenolate anions contain intramolecular O-H...O-hydrogen bonds. The ions are linked into a finite centrosymmetric aggregate by means of N-H...O hydrogen bonds. meso-5,5,7,12,12,14-Hexamethyl-1,4,8,11-tetraazacyclotetradecane-4,4'-thiobiphenol-methanol (1/2/2), (C16H36N4).(C12H10O2S)2.(CH4O)2 (2), and meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane-4,4'-sulfonylbiphenol-methanol (1/2/2), (C16H36N4).(C12H10O4S)2.(CH4O)2 (3), are isomorphous: each is a salt, [C16H38N4]2+.2[HOC6H4SC6H4O]-.2MeOH (2) and [C16H38N4]2+.2[HOC6H4SO2C6H4O]-.2MeOH (3), and in each the phenolate anions are linked by O-H...O- hydrogen bonds into chains; antiparallel pairs of chains are cross-linked by the cations to form molecular ladders, with neutral methanol molecules acting as spacer units. In meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane-3-hydroxybenzoic acid-methanol (1/2/2) (4), 3-hydroxybenzoate anions form chains, again cross-linked in pairs by the [C16H38N4]2+ cations to form molecular ladders, different from those in (2) and (3) in that the neutral methanol units are pendent from the ladders, rather than forming a part of it. meso-5,5,7,12,12,14-Hexamethyl-1,4,8,11-tetraazacyclotetradecane-4-hydroxybenzoic acid-methanol (1/2/1) (5) is again a salt, [C16H38N4]2+.2[HOC6H4COO]-.MeOH: chains of 4-hydroxybenzoate anions are continuously cross-linked by two different types of [C16H38N4]2+ cation into a two-dimensional net. Only one of the two types of cation is linked to the chains via neutral methanol spacer units. meso-5,5,7,12,12,14-Hexamethyl-1,4,8,11-tetraazacyclotetradecane-phenylphosphonic acid-water (1/4/2) (6) is a salt, [C16H40N4]4+.4[C6H5PO3H]-.2H2O, containing the centrosymmetric tetraprotonated amine units, which have a conformation quite different from the trans-III conformation uniformly found in the [C16H38N4]2+ cations. The phenylphosphonate anions and the water molecules are linked into chains of fused rings, which are linked by the cations into two-dimensional nets. In meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetrade cane-3,5-dihydroxybenzoic acid (1/2) (7), the 3,5-dihydroxybenzoate anions in the unsolvated salt [C16H38N4]2+.2[(HO)2C6H3COO]- are linked into continuous two-dimensional nets, which are in turn linked by the centrosymmetric cations to form a three-dimensional framework. meso-5,5,7,12,12,14-Hexamethyl-1,4,8,11-tetraazacyclo tetradecane-4,4'-biphenol (1/3) (8) is a salt containing both neutral and anionic biphenol units, [C16H38N4]2+.2[HOC6H4-C6H4O]-.[HOC6H4C6H4OH]. The two types of biphenol unit form two-dimensional nets and these nets are linked by the cations to form three independent, three-dimensional frameworks which are fully interwoven, but not bonded to one another.

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Conformational preferences in 2-nitrophenylthiolates: interplay between intra- and intermolecular forces; structures of (E)-1-(4-methyl-2-nitrobenzenethiolato)-2-phenylethene, S-(2-nitrophenyl)-benzenecarbothiolate and 1-(2-nitrophenylthio)-2,5-pyrrolidinedione

In (E)-1-(4-methyl-2-nitrobenzenethiolato)-2-phenylethene, C15H13NO2S (1) (orthorhombic Pbca), the nitro group is almost coplanar with the adjacent aryl ring, but the dihedral angles between the nitro-aryl and styryl fragments is approximately 121 degrees. The molecules are linked by paired C-H...O hydrogen bonds in a chain of rings. In S-(2-nitrophenyl)benzenecarbothiolate, C13H9NO3S (2) (monoclinic P2(1)/a), the nitro group is rotated by 33.0 (2) degrees out of the plane of the adjacent aryl ring and the thiobenzoate group is strongly twisted away from the plane of the disubstituted aryl ring. The molecules of (2) are linked into chains by C--H...O hydrogen bonds, and each chain is linked to two neighbouring chains by means of aromatic pi... pi stacking interactions. In 1-(2-nitrophenylthio)-2,5-pyrrolidinedione, C10H8N2O4S (3) (monoclinic P2(1)/a), the nitro group is again almost coplanar with the adjacent aryl ring, but the pyrrolidinedione unit is almost orthogonal to the O2NC6H4SN plane. There are three types of C-H...O hydrogen bond in the structure, and these link the molecules into a two-dimensional net. The conformations of these molecules have been investigated by SCF calculations and two energy minima have been identified for each: the molecules of (1) and (3) adopt conformations in their crystals which are close to those at the overall energy minima calculated for isolated molecules, while molecules of (2) adopt a conformation in the crystal close to that calculated for the local energy minimum. Comparisons are made with the structures of some related compounds and it is concluded that, while the nature of the two conformational minima is determined by intramolecular forces, the choice between them is determined primarily by intermolecular forces.

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Supramolecular chemistry of amine--phenol adducts; novel three-dimensional framework structures in adducts of bis(2-aminoethyl)amine with 4,4'-sulfonyldiphenol, 1,1,1-tris(4-hydroxyphenyl)-ethane and 3,5-dihydroxybenzoic acid, and in the methanol-solvated adduct of tris(2-aminoethyl)-amine with 4,4'-biphenol

Bis(2-aminoethyl)amine-4,4'-sulfonyldiphenol (1/3) (1) (orthorhombic Pccn with Z' = 0.5) is a salt, [HN(CH2CH2NH3)2]2+.[O2S(C6H4O)2-.[O2S(C6H4OH)2]2, containing both dianionic and neutral bis-phenol units. The neutral and anionic bis-phenol units are linked by strong O-H...O- hydrogen bonds to form ladders built from R4(4)(48) rings: each ladder is interwoven with its two nearest neighbours to form a continuous two-dimensional sheet. The amine cations play two roles: they link each ladder to its two next-nearest neighbours by means of N-H...O hydrogen bonds and they also link each sheet to the two neighbouring sheets, again via N-H...O hydrogen bonds, thus generating a three-dimensional framework. Bis(2-aminoethyl)amine-1,1,1-tris(4-hydroxyphenyl)ethane-methanol (1/4/1) (2) (triclinic P1 with Z' = 0.5) consists entirely of neutral fragments. The tris-phenol units are linked by O-H...O hydrogen bonds into molecular ladders built from R4(4)(48) rings: these ladders are linked by the amine units, firstly into sheets and thence into a three-dimensional framework. Bis(2-aminoethyl)amine-3,5-dihydroxybenzoic acid (1/2) (3) (monoclinic P2(1)/c with Z' = 1) is a salt [HN(CH2CH2NH3)2]2+.[[(HO)2C6H3COO]-]2. The 3,5-dihydroxybenzoate anions are linked by O-H...O hydrogen bonds into interwoven and cross-connected (001) sheets linked by further O-H...O hydrogen bonds into a three-dimensional framework. The (001) sheets are further linked by ladders formed from both cations and anions. Tris(2-aminoethyl)amine-4,4'-biphenol-methanol (1/3/1), (4) (monoclinic P2(1)), is a salt [((H2NCH2CH2)2.N(CH2CH2NH3)]+]2.[OC6H4C6H4O]2.[HOC6H4C6H4OH]5.[MeOH]2, with Z' = 1. The asymmetric unit, containing ten independent molecular components, can be regarded as a supermolecule held together by a total of 13 independent hydrogen bonds, of O-H...O, O-H...N and N-H...O types. The supermolecules are linked by O-H...O and N-H...O hydrogen bonds into two-dimensional sheets, generated by translation; further N-H...O hydrogen bonds around the 2(1) screw axes link neighbouring sheets together into a three-dimensional framework.

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Two different three-dimensional hydrogen-bonded framework structures in two hydrated adducts meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane--terephthalic acid--water (1/1/4) and (1/1/6)

Co-crystallization of meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane, C16H36N4, with terephthalic acid (1,4-benzenedicarboxylic acid), C8H6O4, from ethanol yields the tetrahydrate (C16H36N4).(C8H6O4).(H2O)4 (1), meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecaneterephthalic acid-water (1/1/4), while similar co-crystallization from methanol yields the hexahydrate (C16H36N4).(C8H6O4).(H2O)6 (2), meso-5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane-terephthalic acid-water (1/1/6). Both compounds are salts, [C16H38N4]2+.[C8H4O4]2-. 4H2O (1) and [C16H38N4]2+.[C8H4O4]2-.6H2O (2): in (2) both ionic components lie across centres of inversion and in both salts there are two protons held within the N4 cavity of the cation. In the structure of (1), the cations and anions are linked into chains by means of paired N-H...O hydrogen bonds, and the water molecules are linked into continuous chains by means of O--H...O hydrogen bonds, in which each of the H atoms is independently disordered over two equally populated sites. The water chains link the ionic chains into a continuous three-dimensional framework by means of further O-H...O hydrogen bonds. In (2) the cations and anions are linked by single N--H...O hydrogen bonds, again into chains: at the same time the anions and the water molecules are linked by multiple O-H...O hydrogen bonds into continuous two-dimensional nets, which are linked by the cations, by means of N--H...O hydrogen bonds into a three-dimensional framework, entirely different from that in (1).

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Hydrogen-bonding behaviour of benzene-1,2,4,5-tetracarboxylic acid: supramolecular structures of different dimensionality in the 2:1 adducts formed with 4,4'-bipyridyl and hexamethylenetetramine

Co-crystallization of benzene-1,2,4,5-tetracarboxylic acid, C10H6O8, with 4,4'-bipyridyl, C10H8N2, or with hexamethylenetetramine, C6H12N4, from methanol solutions yields in each case a 2:1 salt, [(C10H9N2)+]2.[(C10H4O8)2-] (1) and [(C6H13N4)+]2.[(C10H4O8)2-] (2). In (1) the carboxylate anions lie across centres of inversion, but they contain no intramolecular O-H...O hydrogen bonds: the cations and anions are linked by strong O-H...N and N-H...O hydrogen bonds into a chain-of-rings, and these chains are further linked into a three-dimensional framework structure by means of C-H...O hydrogen bonds and aromatic pi...pi stacking interactions. Compound (2) contains two independent three-molecule aggregates, comprising a central anion and two cations, linked to the anion by means of short N-H...O hydrogen bonds. One of these aggregates is centrosymmetric, but the other is not, and the two types of anion both form two intramolecular O-H...O hydrogen bonds. The two types of three-molecule aggregate, in which all the anions are virtually parallel, are linked by short C-H...O hydrogen bonds into a molecular staircase.

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Oligosiloxanediols as building blocks for supramolecular chemistry: hydrogen-bonded adducts with amines form supramolecular structures in zero, one and two dimensions

The structure of 1,1,3,3,5,5-hexaphenyltrisiloxane-1,5-diol-pyrazine (4/1), (C36H32O4Si3)4.C4H4N2 (1), contains finite centrosymmetric aggregates; the diol units form dimers, by means of O-H...O hydrogen bonds, and pairs of such dimers are linked to the pyrazine by means of O-H...N hydrogen bonds. In 1,1,3,3,5,5-hexaphenyltrisiloxane-1,5-diol-pyridine (2/3), (C36H32O4Si3)2.(C5H5N)3 (2), the diol units are linked into centrosymmetric pairs by means of disordered O-H...O hydrogen bonds: two of the three pyridine molecules are linked to the diol dimer by means of ordered O-H...N hydrogen bonds, while the third pyridine unit, which is disordered across a centre of inversion, links the diol dimers into a C3(3) (9) chain by means of O-H...N and C-H...O hydrogen bonds. In 1,1,3,3-tetraphenyldisiloxane-1,3-diol-hexamethylenetetramine (1/1), (C24H22O3Si2).C6H12N4 (3), the diol acts as a double donor and the hexamethylenetetramine acts as a double acceptor in ordered O-H...N hydrogen bonds and the structure consists of C2(2) (10) chains of alternating diol and amine units. In 1,1,3,3-tetraphenyldisiloxane-1,3-diol-2,2'-bipyridyl (1/1), C24H22O3Si2.C10H8N2 (4), there are two independent diol molecules, both lying across centres of inversion and therefore both containing linear Si-O-Si groups: each diol acts as a double donor of hydrogen bonds and the unique 2,2'-bipyridyl molecule acts as a double acceptor, thus forming C2(2) (11) chains of alternating diol and amine units. The structural motif in 1,1,3,3-tetraphenyldisiloxane-1,3-diol-pyrazine (2/1), (C24H22O3Si2)2. C4H4N2 (5), is a chain-of-rings: pairs of diol molecules are linked by O-H...O hydrogen bonds into centrosymmetric R2(2) (12) dimers and these dimers are linked into C2(2) (13) chains by means of O-H...N hydrogen bonds to the pyrazine units. 1,1,3,3-Tetraphenyldisiloxane-1,3-diol-pyridine (1/1), C24H22O3Si2.C5H5N (6), and 1,1,3,3-tetraphenyldisiloxane-1,3-diol-pyrimidine (1/1), C24H22O3Si2.C4H4N2 (7), are isomorphous: in each compound the amine unit is disordered across a centre of inversion. The diol molecules form C(6) chains, by means of disordered O-H...O hydrogen bonds, and these chains are linked into two-dimensional nets built from R6(6) (26) rings, by a combination of O-H...N and C-H...O hydrogen bonds.

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3,6,9,16,19,22-Hexaazatricyclo

The adduct (1) formed between the hexaaza macrocycle 3,6,9,16,19,22-hexaazatricyclo[22.2.2.2(11,14]triconta-1(26),11(29),12,14(30),24,27-hexaene, C24H38N6, and 4,4'-sulfonyldiphenol, O2S(C6H4OH)2, is a salt [(C24H40N6)2+].2[(HOC6H4SO2C6H4O)-], and the adduct (2) formed by the same macrocyclic amine with 4,4'-biphenol is an aquated salt which also contains neutral biphenol molecules, [(C24H40N6)2+]. 2[(HOC6H4C6H4O)-].(HOC6H4C6H4OH).2H2O. In both compounds the cations lie across centres of inversion: there are two crystallographically distinct cation sites in (1) and the conformations of the cations occupying them are quite different. In (2) the single type of cation site is occupied by a conformationally disordered cation: the major and minor components represent two further distinct conformers. In (1) the anions are linked by O-H...O hydrogen bonds into chains, and each cation is linked by a total of six N-H...O hydrogen bonds to anions in four different chains, so linking the chains into continuous sheets. In (2) the anions and the water molecules are linked into sheets, which are further linked into a continuous three-dimensional framework by both the cations and the neutral biphenol units.

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Subtype-specific kinetics of inhibitory adenosine receptor internalization are determined by sensitivity to phosphorylation by G protein-coupled receptor kinases.

Despite coupling to the same class of inhibitory G proteins and binding the same physiological ligand, the human A(1) and rat A(3) adenosine receptors (ARs) desensitize at different rates in response to sustained agonist exposure. This is due to the ability of the A(3)AR, but not the A(1)AR, to serve as a substrate for rapid phosphorylation and desensitization by members of the G protein-coupled receptor kinase (GRK) family. The aim of this study was to investigate whether these differences were also manifested in their abilities to undergo agonist-dependent receptor internalization. For the first time, we report that A(3)ARs internalize profoundly in response to short-term exposure to agonist but not activators of second messenger-regulated kinases. The A(3)AR-selective antagonist MRS1523 blocked both A(3)AR phosphorylation and internalization. Moreover, in contrast to the A(1)AR, which internalized quite slowly (t(1/2) = 90 min), A(3)ARs internalized rapidly (t(1/2) = 10 min) over a time frame that followed the onset of receptor phosphorylation. A nonphosphorylated A(3)AR mutant failed to internalize over a 60-min time course, suggesting that receptor phosphorylation was essential for rapid A(3)AR internalization to occur. In addition, fusion onto the A(1)AR of the A(3)AR C-terminal domain containing the sites for phosphorylation by GRKs conferred rapid agonist-induced internalization kinetics (t(1/2) = 10 min) on the resulting chimeric AR. In conclusion, these data suggest that GRK-stimulated phosphorylation of threonine residues within the C-terminal domain of the A(3)AR is obligatory to observe rapid agonist-mediated internalization of the receptor.

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