Drug Transporters. Группа авторов

Чтение книги онлайн.

Читать онлайн книгу Drug Transporters - Группа авторов страница 62

Drug Transporters - Группа авторов

Скачать книгу

Sekine T, Cha SH, Tsuda M, Apiwattanakul N, Nakajima N, Kanai Y, Endou H. Identification of multispecific organic anion transporter 2 expressed predominantly in the liver. FEBS Lett 1998; 429 (2):179–182.

      30 [30] Lopez‐Nieto CE. 1996. NKT cDNA sequence, GenBank Accession Number: MMU52842, submitted March 27, 1996.

      31 [31] Lopez‐Nieto CE, You G, Barros EJG, Beier DR, Nigam SK. Molecular cloning and characterization of a novel transport protein with very high expression in the kidney (Abstract). J Am Soc Nephrol 1996; 7:1301.

      32 [32] Lopez‐Nieto CE, You G, Bush K.T, Barros EJ, Beier DR, Nigam SK. Molecular cloning and characterization of NKT, a gene product related to the organic cation transporter family that is almost exclusively expressed in the kidney. J Biol Chem 1997; 272 (10):6471–6478.

      33 [33] Sekine T, Watanabe N, Hosoyamada M, Kanai Y, Endou H. Expression cloning and characterization of a novel multispecific organic anion transporter. J Biol Chem 1997; 272 (30):18526–18529.

      34 [34] Sweet DH, Wolff NA, Pritchard JB. Expression cloning and characterization of ROAT1. The basolateral organic anion transporter in rat kidney. J Biol Chem 1997; 272 (48):30088–30095.

      35 [35] Pavlova A, Sakurai H, Leclercq B, Beier DR, Yu AS, Nigam SK. Developmentally regulated expression of organic ion transporters NKT (OAT1), OCT1, NLT (OAT2), and Roct. Am J Physiol Renal Physiol 2000; 278 (4):F635–F643.

      36 [36] Ahn SY, Eraly SA, Tsigelny I, Nigam SK. Interaction of organic cations with organic anion transporters. J Biol Chem 2009; 284 (45):31422–31430.

      37 [37] Ahn SY, Jamshidi N, Mo ML, Wu W, Eraly SA, Dnyanmote A, Bush KT, Gallegos TF, Sweet DH, Palsson BO, Nigam SK. Linkage of organic anion transporter‐1 to metabolic pathways through integrated “omics”‐driven network and functional analysis. J Biol Chem 2011; 286 (36):31522–31531.

      38 [38] Vallon V, Eraly SA, Rao SR, Gerasimova M, Rose M, Nagle M, Anzai N, Smith T, Sharma K, Nigam SK, Rieg T. A role for the organic anion transporter OAT3 in renal creatinine secretion in mice. Am J Physiol Renal Physiol 2012; 302 (10):F1293–F1299.

      39 [39] Nigam AK, Li JG, Lall K, Shi D, Bush KT, Bhatnagar V, Abagyan R, Nigam SK. Unique metabolite preferences of the drug transporters OAT1 and OAT3 analyzed by machine learning. J Biol Chem 2020; 295 (7):1829–1842.

      40 [40] Brady KP, Dushkin H, Fornzler D, Koike T, Magner F, Her H, Gullans S, Segre GV, Green RM, Beier DR. A novel putative transporter maps to the osteosclerosis (oc) mutation and is not expressed in the oc mutant mouse. Genomics 1999; 56 (3):254–261.

      41 [41] Kusuhara H, Sekine T, Utsunomiya‐Tate N, Tsuda M, Kojima R, Cha SH, Sugiyama Y, Kanai Y, Endou H. Molecular cloning and characterization of a new multispecific organic anion transporter from rat brain. J Biol Chem 1999; 274 (19):13675–13680.

      42 [42] Race JE, Grassl SM, Williams WJ, Holtzman EJ. Molecular cloning and characterization of two novel human renal organic anion transporters (hOAT1 and hOAT3). Biochem Biophys Res Commun 1999; 255 (2):508–514.

      43 [43] Cha SH, Sekine T, Kusuhara H, Yu E, Kim JY, Kim DK, Sugiyama Y, Kanai Y, Endou H. Molecular cloning and characterization of multispecific organic anion transporter 4 expressed in the placenta. J Biol Chem 2000; 275 (6):4507–4512.

      44 [44] Youngblood GL, Sweet DH. Identification and functional assessment of the novel murine organic anion transporter Oat5 (Slc22a19) expressed in kidney. Am J Physiol Renal Physiol 2004; 287 (2):F236–F244.

      45 [45] Monte JC, Nagle MA, Eraly SA, Nigam SK. Identification of a novel murine organic anion transporter family member, OAT6, expressed in olfactory mucosa. Biochem Biophys Res Commun 2004; 323 (2):429–436.

      46 [46] Wang L, Sweet DH. Renal organic anion transporters (SLC22 family): expression, regulation, roles in toxicity, and impact on injury and disease. AAPS J 2013; 15 (1):53–69.

      47 [47] Jacobsson JA, Haitina T, Lindblom J, Fredriksson R. Identification of six putative human transporters with structural similarity to the drug transporter SLC22 family. Genomics 2007; 90 (5):595–609.

      48 [48] Ahn SY, Nigam SK. Toward a systems level understanding of organic anion and other multispecific drug transporters: a remote sensing and signaling hypothesis. Mol Pharmacol 2009; 76 (3):481–490.

      49 [49] Eraly SA, Bush KT, Sampogna RV, Bhatnagar V, Nigam SK. The molecular pharmacology of organic anion transporters: from DNA to FDA? Mol Pharmacol 2004; 65 (3):479–487.

      50 [50] Eraly SA, Hamilton BA, Nigam SK. Organic anion and cation transporters occur in pairs of similar and similarly expressed genes. Biochem Biophys Res Commun 2003; 300 (2):333–342.

      51 [51] Wu W, Dnyanmote AV, Nigam SK. Remote communication through solute carriers and ATP binding cassette drug transporter pathways: an update on the remote sensing and signaling hypothesis. Mol Pharmacol 2011; 79 (5):795–805.

      52 [52] Burckhardt G. Drug transport by organic anion transporters (OATs). Pharmacol Ther 2012; 136 (1):106–130.

      53 [53] Mundhey DA, Sapkal NP, Daud AS. Simultaneous quantification of buprenorphine HCl and naloxone HCl by vierordt's method. Int J Pharm Pharm Sci 2016; 8 (1):101–107.

      54 [54] Dantzler WH, Wright SH. The molecular and cellular physiology of basolateral organic anion transport in mammalian renal tubules. Biochim Biophys Acta 2003; 1618 (2):185–193.

      55 [55] Pritchard JB, Miller DS. Renal secretion of organic anions and cations. Kidney Int 1996; 49 (6):1649–1654.

      56 [56] Vriend J, Hoogstraten CA, Venrooij KR, van den Berge BT, Govers LP, van Rooij A, Huigen MC, Schirris TJ, Russel FG, Masereeuw R. Organic anion transporters 1 and 3 influence cellular energy metabolism in renal proximal tubule cells. Biol Chem 2019; 400 (10):1347–1358.

      57 [57] Zhou F, You G. Molecular insights into the structure‐function relationship of organic anion transporters OATs. Pharm Res 2007; 24 (1):28–36.

      58 [58] Feng B, Dresser MJ, Shu Y, Johns SJ, Giacomini KM. Arginine 454 and lysine 370 are essential for the anion specificity of the organic anion transporter, rOAT3. Biochemistry 2001; 40 (18):5511–5520.

      59 [59] Astorga B, Wunz TM, Morales M, Wright SH, Pelis RM. Differences in the substrate binding regions of renal organic anion transporters 1 (OAT1) and 3 (OAT3). Am J Physiol Renal Physiol 2011; 301 (2):F378–F386.

      60 [60] Perry JL, Dembla‐Rajpal N, Hall LA, Pritchard JB. A three‐dimensional model of human organic anion transporter 1: aromatic amino acids required for substrate transport. J Biol Chem 2006; 281 (49):38071–38079.

      61 [61] Tsigelny IF, Kovalskyy D, Kouznetsova VL, Balinskyi O, Sharikov Y, Bhatnagar V, Nigam SK. Conformational changes of the multispecific transporter organic anion transporter 1 (OAT1/SLC22A6) suggests a molecular mechanism for initial stages of drug and metabolite transport. Cell Biochem Biophys 2011; 61 (2):251–259.

      62 [62] Kaler G, Truong DM, Sweeney DE, Logan DW, Nagle M, Wu W, Eraly SA, Nigam SK. Olfactory mucosa‐expressed organic anion transporter, Oat6, manifests high affinity interactions with odorant organic anions. Biochem Biophys Res Commun 2006; 351 (4):872–876.

      63 [63] Nigam SK, Bhatnagar V. How much do we know about drug handling by SLC and ABC drug transporters in children? Clin Pharmacol Ther 2013; 94 (1):27–29.

      64 [64] Sweet DH, Eraly SA, Vaughn DA, Bush KT, Nigam SK. Organic anion and cation transporter expression and function during embryonic kidney development and in organ

Скачать книгу