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1 cast doubt on the designation of ACSVL3 as a fatty acid transport protein.
2 y acid uptake and may represent a long-chain fatty acid transport protein.
3 cent progress in elucidating the function of fatty acid transport proteins.
4 een fatty acid metabolism or metabolites and fatty acid transport proteins.
5 These enzymes have also been designated fatty acid transport proteins.
6 of a member of the family of plasma membrane fatty acid transport proteins.
7 etase, and others have been characterized as fatty acid transport proteins.
11 mice with cardiac-specific overexpression of fatty acid transport protein 1 (FATP1) using the alpha-m
15 n fatty acid translocase CD36 (R(2) = 0.30), fatty acid transport protein 1 (R(2) = 0.24), and AcylCo
16 db adipocytes; and only marginal changes in fatty acid transport protein 1 mRNA were found in any of
18 ed that phospho-EPRS binds SLC27A1 (that is, fatty acid transport protein 1, FATP1), inducing its tra
23 y long-chain fatty acids-like 1 (ELOVL1) and fatty acid transport protein 4 (FATP4), which each have
24 bitor type 1; and the fatty acid transporter fatty acid transport protein 4 have all been linked to A
30 ific, non-toxic, and persistent knockdown of fatty acid transport protein 5 in mouse livers from a si
31 , significantly inhibited mRNA expression of fatty acid transport protein 5 in the presence of DGLA,
32 ique to knock down the expression of hepatic fatty acid transport protein 5 in vivo prior to or after
36 proteins (glutamic-oxaloacetic transaminase, fatty acid transport protein, and fatty acid translocase
39 l-coenzyme A (acyl-CoA) synthetases [(ACSVL)/fatty acid transport protein] are receiving considerable
40 ent down-regulates the hepatic expression of fatty acid transport protein, but up-regulates several a
41 (FAT1), previously identified as encoding a fatty acid transport protein, by its homology to rat liv
42 ulates the intracellular distribution of the fatty acid transport protein, CD36, altering fatty acid
43 thione S-transferase, albumin) and membrane (fatty acid transport protein, CD36, aspartate aminotrans
46 lar chemical properties as compared with the fatty acid transport protein FATP described in 3T3-L1 ad
50 llular localization of a novel member of the fatty acid transport protein (FATP) family termed FATP6.
54 across the plasma membrane is facilitated by fatty acid transport protein (FATP), a plasma membrane p
55 In cultured human keratinocytes, mRNA for fatty acid transport protein (FATP), plasma membrane fat
56 in MHC-FATP transgenic mice that overexpress fatty acid transport protein (FATP)1 in the heart under
59 the absence of any changes in expression of fatty acid transport proteins (FATP) 2 and 4, and are in
60 Long chain acyl-CoA synthetases (ACSL) and fatty acid transport proteins (FATP) activate fatty acid
61 has significant homologies to the mammalian fatty acid transport proteins (FATP) and the very long-c
62 minotransferase, fatty acid translocase, and fatty acid transporting protein (FATP) were also determi
63 e present evidence that Fat1p and the murine fatty-acid transport protein (FATP) are functional homol
66 L1 adipocyte differentiation, expression of fatty acid transport proteins (FATPs) 1 and 4 is induced
67 better understand the molecular mechanism of fatty acid transport protein function and the physiologi
69 xylase (ACC), malonyl-CoA decarboxylase, and fatty acid transport proteins in muscle biopsies from no
70 fatty acid uptake and enzymatic activity of fatty acid transport proteins likely contribute to these
71 The target for the inhibitors is a mammalian fatty acid transport protein (mmFATP2), which is involve
74 ng to the combined up-regulation of CD36 and fatty acid transport proteins, suppression of fatty acid
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