-
1
-
-
0022382625
-
The relationship of enzyme activity to feeding behavior in rats: Lipoprotein lipase as the metabolic gatekeeper
-
Greenwood, M. R. (1985) The relationship of enzyme activity to feeding behavior in rats: lipoprotein lipase as the metabolic gatekeeper. Int. J. Obes. 9, 67-70
-
(1985)
Int. J. Obes.
, vol.9
, pp. 67-70
-
-
Greenwood, M.R.1
-
3
-
-
84857861919
-
Mechanisms for insulin resistance: Common threads and missing links
-
Samuel, V. T., and Shulman, G. I. (2012) Mechanisms for insulin resistance: common threads and missing links. Cell 148, 852-871
-
(2012)
Cell
, vol.148
, pp. 852-871
-
-
Samuel, V.T.1
Shulman, G.I.2
-
4
-
-
77951918926
-
Macrophages, inflammation, and insulin resistance
-
Olefsky, J. M., and Glass, C. K. (2010) Macrophages, inflammation, and insulin resistance. Annu. Rev. Physiol. 72, 219-246
-
(2010)
Annu. Rev. Physiol.
, vol.72
, pp. 219-246
-
-
Olefsky, J.M.1
Glass, C.K.2
-
6
-
-
0035912744
-
Tissue-specific overexpression of lipoprotein lipase causes tissue-specific insulin resistance
-
Kim, J. K., Fillmore, J. J., Chen, Y., Yu, C., Moore, I. K., Pypaert, M., Lutz, E. P., Kako, Y., Velez-Carrasco, W., Goldberg, I. J., Breslow, J. L., and Shulman, G. I. (2001) Tissue-specific overexpression of lipoprotein lipase causes tissue-specific insulin resistance. Proc. Natl. Acad. Sci. U.S.A. 98, 7522-7527
-
(2001)
Proc. Natl. Acad. Sci. U.S.A.
, vol.98
, pp. 7522-7527
-
-
Kim, J.K.1
Fillmore, J.J.2
Chen, Y.3
Yu, C.4
Moore, I.K.5
Pypaert, M.6
Lutz, E.P.7
Kako, Y.8
Velez-Carrasco, W.9
Goldberg, I.J.10
Breslow, J.L.11
Shulman, G.I.12
-
7
-
-
63249101983
-
Skeletal muscle-specific deletion of lipoprotein lipase enhances insulin signaling in skeletal muscle but causes insulin resistance in liver and other tissues
-
Wang, H., Knaub, L. A., Jensen, D. R., Young Jung, D., Hong, E. G., Ko, H. J., Coates, A. M., Goldberg, I. J., de la Houssaye, B. A., Janssen, R. C., McCurdy, C. E., Rahman, S. M., Soo Choi, C, Shulman, G. I., Kim, J. K., et al. (2009) Skeletal muscle-specific deletion of lipoprotein lipase enhances insulin signaling in skeletal muscle but causes insulin resistance in liver and other tissues. Diabetes 58, 116-124
-
(2009)
Diabetes
, vol.58
, pp. 116-124
-
-
Wang, H.1
Knaub, L.A.2
Jensen, D.R.3
Young Jung, D.4
Hong, E.G.5
Ko, H.J.6
Coates, A.M.7
Goldberg, I.J.8
De La Houssaye, B.A.9
Janssen, R.C.10
McCurdy, C.E.11
Rahman, S.M.12
Soo Choi, C.13
Shulman, G.I.14
Kim, J.K.15
-
8
-
-
2542491213
-
Peroxisome proliferator-acti-vated receptor y in diabetes and metabolism
-
Rangwala, S. M., and Lazar, M. A. (2004) Peroxisome proliferator-acti-vated receptor y in diabetes and metabolism. Trends Pharmacol. Sci. 25, 331-336
-
(2004)
Trends Pharmacol. Sci.
, vol.25
, pp. 331-336
-
-
Rangwala, S.M.1
Lazar, M.A.2
-
9
-
-
17444420663
-
Pioglitazone improves insulin sensitivity through reduction in muscle lipid and redistribution of lipid into adipose tissue
-
Rasouli, N., Raue, U., Miles, L. M., Lu, T., Di Gregorio, G. B., Elbein, S. C, and Kern, P. A. (2005) Pioglitazone improves insulin sensitivity through reduction in muscle lipid and redistribution of lipid into adipose tissue. Am. J. Physiol. Endocrinol. Metab. 288, E930-E934
-
(2005)
Am. J. Physiol. Endocrinol. Metab.
, vol.288
, pp. E930-E934
-
-
Rasouli, N.1
Raue, U.2
Miles, L.M.3
Lu, T.4
Di Gregorio, G.B.5
Elbein, S.C.6
Kern, P.A.7
-
10
-
-
0029791412
-
PPARa and PPAR7 activators direct a distinct tissue-specific transcriptional response via a PPRE in the lipoprotein lipase gene
-
Schoonjans, K., Peinado-Onsurbe, J., Lefebvre, A. M., Heyman, R. A., Briggs, M., Deeb, S., Staels, B., and Auwerx, J. (1996) PPARa and PPAR7 activators direct a distinct tissue-specific transcriptional response via a PPRE in the lipoprotein lipase gene. EMBOJ. 15, 5336-5348
-
(1996)
EMBOJ.
, vol.15
, pp. 5336-5348
-
-
Schoonjans, K.1
Peinado-Onsurbe, J.2
Lefebvre, A.M.3
Heyman, R.A.4
Briggs, M.5
Deeb, S.6
Staels, B.7
Auwerx, J.8
-
11
-
-
0034708580
-
Mechanism of insulin resistance in A-ZIP/F-1 fatless mice
-
Kim, J. K., Gavrilova, O., Chen, Y., Reitman, M. L., and Shulman, G. I. (2000) Mechanism of insulin resistance in A-ZIP/F-1 fatless mice. J. Biol. Chem. 275, 8456-8460
-
(2000)
J. Biol. Chem.
, vol.275
, pp. 8456-8460
-
-
Kim, J.K.1
Gavrilova, O.2
Chen, Y.3
Reitman, M.L.4
Shulman, G.I.5
-
12
-
-
0036114844
-
Leptin reverses insulin resistance and hepatic steatosis in patients with severe lipodystrophy
-
Petersen, K. F., Oral, E. A., Dufour, S., Befroy, D., Ariyan, C, Yu, C, Cline, G. W., DePaoli, A. M., Taylor, S. I., Gorden, P., and Shulman, G. I. (2002) Leptin reverses insulin resistance and hepatic steatosis in patients with severe lipodystrophy. J. Clin. Invest. 109, 1345-1350
-
(2002)
J. Clin. Invest.
, vol.109
, pp. 1345-1350
-
-
Petersen, K.F.1
Oral, E.A.2
Dufour, S.3
Befroy, D.4
Ariyan, C.5
Yu, C.6
Cline, G.W.7
Depaoli, A.M.8
Taylor, S.I.9
Gorden, P.10
Shulman, G.I.11
-
13
-
-
0033942169
-
Adipose tissue deficiency, glucose intolerance, and increased atherosclerosis result from mutation in the mouse fatty liver dystrophy (fld) gene
-
Reue, K., Xu, P., Wang, X. P., and Slavin, B. G. (2000) Adipose tissue deficiency, glucose intolerance, and increased atherosclerosis result from mutation in the mouse fatty liver dystrophy (fld) gene. J. Lipid Res. 41, 1067-1076
-
(2000)
J. Lipid Res.
, vol.41
, pp. 1067-1076
-
-
Reue, K.1
Xu, P.2
Wang, X.P.3
Slavin, B.G.4
-
14
-
-
0037418303
-
Lipolysis of triglyceride-rich lipoproteins generates PPAR ligands: Evidence for an antiinflammatory role for lipoprotein lipase
-
Ziouzenkova, O., Perrey, S., Asatryan, L., Hwang, J., MacNaul, K. L., Moller, D. E., Rader, D. J., Sevanian, A., Zechner, R., Hoefler, G., and Plutzky, J. (2003) Lipolysis of triglyceride-rich lipoproteins generates PPAR ligands: evidence for an antiinflammatory role for lipoprotein lipase. Proc. Natl. Acad. Sci. U.S.A. 100, 2730-2735
-
(2003)
Proc. Natl. Acad. Sci. U.S.A.
, vol.100
, pp. 2730-2735
-
-
Ziouzenkova, O.1
Perrey, S.2
Asatryan, L.3
Hwang, J.4
Macnaul, K.L.5
Moller, D.E.6
Rader, D.J.7
Sevanian, A.8
Zechner, R.9
Hoefler, G.10
Plutzky, J.11
-
15
-
-
0037417726
-
PPARS is a very low-density lipoprotein sensor in macrophages
-
Chawla, A., Lee, C H, Barak, Y., He, W., Rosenfeld, J., Liao, D., Han, J., Kang, H, and Evans, R. M. (2003) PPARS is a very low-density lipoprotein sensor in macrophages. Proc. Natl. Acad. Sci. U.S.A. 100, 1268-1273
-
(2003)
Proc. Natl. Acad. Sci. U.S.A.
, vol.100
, pp. 1268-1273
-
-
Chawla, A.1
Lee, C.H.2
Barak, Y.3
He, W.4
Rosenfeld, J.5
Liao, D.6
Han, J.7
Kang, H.8
Evans, R.M.9
-
16
-
-
84859544293
-
Regulation of mitochondrial biogenesis by lipoprotein lipase in muscle of insulin-resistant offspring of parents with type 2 diabetes
-
Morino, K., Petersen, K. F., Sono, S., Choi, C. S., Samuel, V. T., Lin, A., Gallo, A., Zhao, H, Kashiwagi, A., Goldberg, I. J., Wang, H., Eckel, R. H, Maegawa, H, and Shulman, G. I. (2012) Regulation of mitochondrial biogenesis by lipoprotein lipase in muscle of insulin-resistant offspring of parents with type 2 diabetes. Diabetes 61, 877-887
-
(2012)
Diabetes
, vol.61
, pp. 877-887
-
-
Morino, K.1
Petersen, K.F.2
Sono, S.3
Choi, C.S.4
Samuel, V.T.5
Lin, A.6
Gallo, A.7
Zhao, H.8
Kashiwagi, A.9
Goldberg, I.J.10
Wang, H.11
Eckel, R.H.12
Maegawa, H.13
Shulman, G.I.14
-
17
-
-
0028914907
-
Tissue-specific expression of human lipoprotein lipase. Effect of the 3'-untranslated region on translation
-
Ranganathan, G., Ong, J. M., Yukht, A., Saghizadeh, M., Simsolo, R. B., Pauer, A., and Kern, P. A. (1995) Tissue-specific expression of human lipoprotein lipase. Effect of the 3'-untranslated region on translation. J. Biol. Chem. 270, 7149-7155
-
(1995)
J. Biol. Chem.
, vol.270
, pp. 7149-7155
-
-
Ranganathan, G.1
Ong, J.M.2
Yukht, A.3
Saghizadeh, M.4
Simsolo, R.B.5
Pauer, A.6
Kern, P.A.7
-
18
-
-
77954506508
-
Identification and characterization of a promoter cassette conferring adi-pocyte-specific gene expression
-
Wang, Z. V., Deng, Y., Wang, Q. A., Sun, K., and Scherer, P. E. (2010) Identification and characterization of a promoter cassette conferring adi-pocyte-specific gene expression. Endocrinology 151, 2933-2939
-
(2010)
Endocrinology
, vol.151
, pp. 2933-2939
-
-
Wang, Z.V.1
Deng, Y.2
Wang, Q.A.3
Sun, K.4
Scherer, P.E.5
-
19
-
-
0028170634
-
Presence of LDL receptor-related protein/a2-macroglobulin receptors in macrophages of atherosclerotic lesions from cholesterol-fed New Zealand and heterozygous Watanabe heritable hyperlipidemic rabbits
-
Daugherty, A., and Rateri, D. L. (1994) Presence of LDL receptor-related protein/a2-macroglobulin receptors in macrophages of atherosclerotic lesions from cholesterol-fed New Zealand and heterozygous Watanabe heritable hyperlipidemic rabbits. Arterioscler. Thromb. 14, 2017-2024
-
(1994)
Arterioscler. Thromb.
, vol.14
, pp. 2017-2024
-
-
Daugherty, A.1
Rateri, D.L.2
-
20
-
-
84881542196
-
Regulation of thrombospondin-1 expression in alternatively activated macrophages and adipocytes: Role of cellular cross-talk and co-3 fatty acids
-
Finlin, B. S., Zhu, B., Starnes, C. P., McGehee, R. E., Jr., Peterson, C. A., and Kern, P. A. (2013) Regulation of thrombospondin-1 expression in alternatively activated macrophages and adipocytes: role of cellular cross-talk and co-3 fatty acids. J. Nutr. Biochem. 24, 1571-1579
-
(2013)
J. Nutr. Biochem.
, vol.24
, pp. 1571-1579
-
-
Finlin, B.S.1
Zhu, B.2
Starnes, C.P.3
McGehee, R.E.4
Peterson, C.A.5
Kern, P.A.6
-
21
-
-
84864011716
-
DHA reduces the atrophy-associated Fn14 protein in differentiated myotubes during coculture with macrophages
-
Finlin, B. S., Varma, V., Nolen, G. T., Dubé, J., Starnes, C. P., Rasouli, N, Kern, P. A., and Peterson, C. A. (2012) DHA reduces the atrophy-associated Fn14 protein in differentiated myotubes during coculture with macrophages. J. Nutr. Biochem. 23, 885-891
-
(2012)
J. Nutr. Biochem.
, vol.23
, pp. 885-891
-
-
Finlin, B.S.1
Varma, V.2
Nolen, G.T.3
Dubé, J.4
Starnes, C.P.5
Rasouli, N.6
Kern, P.A.7
Peterson, C.A.8
-
22
-
-
0033605582
-
Role of protein kinase C in the translational regulation of lipoprotein lipase in adipocytes
-
Ranganathan, G., Kaakaji, R., and Kern, P. A. (1999) Role of protein kinase C in the translational regulation of lipoprotein lipase in adipocytes. J. Biol. Chem. 274, 9122-9127
-
(1999)
J. Biol. Chem.
, vol.274
, pp. 9122-9127
-
-
Ranganathan, G.1
Kaakaji, R.2
Kern, P.A.3
-
23
-
-
84907509674
-
Effect of procysteine on aging-associated changes in hepatic GSH and SMase: Evidence for transcriptional regulation of smpd3
-
Deevska, G., Sunkara, M., Karakashian, C., Peppers, B., Morris, A. J., and Nikolova-Karakashian, M. N. (2014) Effect of procysteine on aging-associated changes in hepatic GSH and SMase: evidence for transcriptional regulation of smpd3. J. Lipid Res. 55, 2041-2052
-
(2014)
J. Lipid Res.
, vol.55
, pp. 2041-2052
-
-
Deevska, G.1
Sunkara, M.2
Karakashian, C.3
Peppers, B.4
Morris, A.J.5
Nikolova-Karakashian, M.N.6
-
24
-
-
84884147849
-
Mechanism of rapid elimination of lysophosphatidic acid and related lipids from the circulation of mice
-
Salous, A. K., Panchatcharam, M., Sunkara, M., Mueller, P., Dong, A., Wang, Y., Graf, G. A., Smyth, S. S., and Morris, A. J. (2013) Mechanism of rapid elimination of lysophosphatidic acid and related lipids from the circulation of mice. J. Lipid Res. 54, 2775-2784
-
(2013)
J. Lipid Res.
, vol.54
, pp. 2775-2784
-
-
Salous, A.K.1
Panchatcharam, M.2
Sunkara, M.3
Mueller, P.4
Dong, A.5
Wang, Y.6
Graf, G.A.7
Smyth, S.S.8
Morris, A.J.9
-
25
-
-
84867352935
-
Characterization of secretory sphingomyelinase activity, lipoprotein sphingolipid content and LDL aggregation in ldlr-/-mice fed on a high-fat diet
-
Deevska, G. M., Sunkara, M., Morris, A. J., and Nikolova-Karakashian, M. N. (2012) Characterization of secretory sphingomyelinase activity, lipoprotein sphingolipid content and LDL aggregation in ldlr-/-mice fed on a high-fat diet. Biosci. Rep. 32, 479-490
-
(2012)
Biosci. Rep.
, vol.32
, pp. 479-490
-
-
Deevska, G.M.1
Sunkara, M.2
Morris, A.J.3
Nikolova-Karakashian, M.N.4
-
26
-
-
76049086229
-
PPAR7 activation in adipocytes is sufficient for systemic insulin sensitization
-
Sugii, S., Olson, P., Sears, D. D., Saberi, M., Atkins, A. R., Barish, G. D., Hong, S. H., Castro, G. L., Yin, Y. Q., Nelson, M. C, Hsiao, G., Greaves, D. R., Downes, M., Yu, R. T., Olefsky, J. M., and Evans, R. M. (2009) PPAR7 activation in adipocytes is sufficient for systemic insulin sensitization. Proc. Natl. Acad. Sci. U.S.A. 106, 22504-22509
-
(2009)
Proc. Natl. Acad. Sci. U.S.A.
, vol.106
, pp. 22504-22509
-
-
Sugii, S.1
Olson, P.2
Sears, D.D.3
Saberi, M.4
Atkins, A.R.5
Barish, G.D.6
Hong, S.H.7
Castro, G.L.8
Yin, Y.Q.9
Nelson, M.C.10
Hsiao, G.11
Greaves, D.R.12
Downes, M.13
Yu, R.T.14
Olefsky, J.M.15
Evans, R.M.16
-
27
-
-
23644455127
-
PPAR7 regulates adipocyte cholesterol metabolism via oxidized LDL receptor 1
-
Chui, P. C, Guan, H. P., Lehrke, M., and Lazar, M. A. (2005) PPAR7 regulates adipocyte cholesterol metabolism via oxidized LDL receptor 1. J. Clin. Invest. 115, 2244-2256
-
(2005)
J. Clin. Invest.
, vol.115
, pp. 2244-2256
-
-
Chui, P.C.1
Guan, H.P.2
Lehrke, M.3
Lazar, M.A.4
-
28
-
-
13844262924
-
Corepressors selectively control the transcriptional activity of PPAR7 in adipocytes
-
Guan, H. P., Ishizuka, T., Chui, P. C, Lehrke, M., and Lazar, M. A. (2005) Corepressors selectively control the transcriptional activity of PPAR7 in adipocytes. Genes Dev. 19, 453-461
-
(2005)
Genes Dev.
, vol.19
, pp. 453-461
-
-
Guan, H.P.1
Ishizuka, T.2
Chui, P.C.3
Lehrke, M.4
Lazar, M.A.5
-
29
-
-
0036797450
-
A futile metabolic cycle activated in adipocytes by antidiabetic agents
-
Guan, H. P., Li, Y., Jensen, M. V., Newgard, C. B., Steppan, C M., and Lazar, M. A. (2002) A futile metabolic cycle activated in adipocytes by antidiabetic agents. Nat. Med. 8, 1122-1128
-
(2002)
Nat. Med.
, vol.8
, pp. 1122-1128
-
-
Guan, H.P.1
Li, Y.2
Jensen, M.V.3
Newgard, C.B.4
Steppan, C.M.5
Lazar, M.A.6
-
30
-
-
78650862930
-
Deficiency of lipoprotein lipase in neurons modifies the regulation of energy balance and leads to obesity
-
Wang, H., Astarita, G., Taussig, M. D., Bharadwaj, K. G., DiPatrizio, N V., Nave, K. A., Piomelli, D., Goldberg, I. J., and Eckel, R. H. (2011) Deficiency of lipoprotein lipase in neurons modifies the regulation of energy balance and leads to obesity. CellMetab. 13, 105-113
-
(2011)
CellMetab.
, vol.13
, pp. 105-113
-
-
Wang, H.1
Astarita, G.2
Taussig, M.D.3
Bharadwaj, K.G.4
Dipatrizio, N.V.5
Nave, K.A.6
Piomelli, D.7
Goldberg, I.J.8
Eckel, R.H.9
-
31
-
-
10744220626
-
Overexpression of lipoprotein lipase in transgenic Watanabe heritable hyperlipidemic rabbits improves hyperlipidemia and obesity
-
Koike, T., Liang, J., Wang, X., Ichikawa, T., Shiomi, M., Liu, G., Sun, H., Kitajima, S., Morimoto, M., Watanabe, T., Yamada, N, and Fan, J. (2004) Overexpression of lipoprotein lipase in transgenic Watanabe heritable hyperlipidemic rabbits improves hyperlipidemia and obesity. J. Biol. Chem. 279, 7521-7529
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 7521-7529
-
-
Koike, T.1
Liang, J.2
Wang, X.3
Ichikawa, T.4
Shiomi, M.5
Liu, G.6
Sun, H.7
Kitajima, S.8
Morimoto, M.9
Watanabe, T.10
Yamada, N.11
Fan, J.12
-
32
-
-
0030757251
-
Induced mutant mice expressing lipoprotein lipase exclusively in muscle have subnormal triglycerides yet reduced high density lipoprotein cholesterol levels in plasma
-
Levak-Frank, S., Weinstock, P. H., Hayek, T., Verdery, R., Hofmann, W., Ramakrishnan, R., Sattler, W., Breslow, J. L., and Zechner, R. (1997) Induced mutant mice expressing lipoprotein lipase exclusively in muscle have subnormal triglycerides yet reduced high density lipoprotein cholesterol levels in plasma. J. Biol. Chem. 272, 17182-17190
-
(1997)
J. Biol. Chem.
, vol.272
, pp. 17182-17190
-
-
Levak-Frank, S.1
Weinstock, P.H.2
Hayek, T.3
Verdery, R.4
Hofmann, W.5
Ramakrishnan, R.6
Sattler, W.7
Breslow, J.L.8
Zechner, R.9
-
33
-
-
84860214013
-
Transgenic expression and genetic variation of Lmf1 affect LPL activity in mice and humans
-
Hosseini, M., Ehrhardt, N, Weissglas-Volkov, D., Lai, C. M., Mao, H. Z., Liao, J. L., Nikkola, E., Bensadoun, A., Taskinen, M. R., Doolittle, M. H., Pajukanta, P., and Péterfy, M. (2012) Transgenic expression and genetic variation of Lmf1 affect LPL activity in mice and humans. Arterioscler. Thromb. Vasc. Biol. 32, 1204-1210
-
(2012)
Arterioscler. Thromb. Vasc. Biol.
, vol.32
, pp. 1204-1210
-
-
Hosseini, M.1
Ehrhardt, N.2
Weissglas-Volkov, D.3
Lai, C.M.4
Mao, H.Z.5
Liao, J.L.6
Nikkola, E.7
Bensadoun, A.8
Taskinen, M.R.9
Doolittle, M.H.10
Pajukanta, P.11
Péterfy, M.12
-
34
-
-
2642581722
-
Overexpression of lipoprotein lipase in transgenic rabbits leads to increased small dense LDL in plasma and promotes atherosclerosis
-
Ichikawa, T., Kitajima, S., Liang, J., Koike, T., Wang, X., Sun, H., Okazaki, M., Morimoto, M., Shikama, H., Watanabe, T., Yamada, N, and Fan, J. (2004) Overexpression of lipoprotein lipase in transgenic rabbits leads to increased small dense LDL in plasma and promotes atherosclerosis. Lab. Invest. 84, 715-726
-
(2004)
Lab. Invest.
, vol.84
, pp. 715-726
-
-
Ichikawa, T.1
Kitajima, S.2
Liang, J.3
Koike, T.4
Wang, X.5
Sun, H.6
Okazaki, M.7
Morimoto, M.8
Shikama, H.9
Watanabe, T.10
Yamada, N.11
Fan, J.12
-
35
-
-
0027296725
-
Overexpression of human lipoprotein lipase in transgenic mice. Resistance to diet-induced hypertriglyceridemia and hypercholesterolemia
-
Shimada, M., Shimano, H., Gotoda, T., Yamamoto, K., Kawamura, M., Inaba, T., Yazaki, Y., and Yamada, N. (1993) Overexpression of human lipoprotein lipase in transgenic mice. Resistance to diet-induced hypertriglyceridemia and hypercholesterolemia. J. Biol. Chem. 268, 17924-17929
-
(1993)
J. Biol. Chem.
, vol.268
, pp. 17924-17929
-
-
Shimada, M.1
Shimano, H.2
Gotoda, T.3
Yamamoto, K.4
Kawamura, M.5
Inaba, T.6
Yazaki, Y.7
Yamada, N.8
-
36
-
-
84877329207
-
PPAR7 signaling and metabolism: The good, the bad and the future
-
Ahmadian, M., Suh, J. M., Hah, N, Liddle, C, Atkins, A. R., Downes, M., and Evans, R. M. (2013) PPAR7 signaling and metabolism: the good, the bad and the future. Nat. Med. 19, 557-566
-
(2013)
Nat. Med.
, vol.19
, pp. 557-566
-
-
Ahmadian, M.1
Suh, J.M.2
Hah, N.3
Liddle, C.4
Atkins, A.R.5
Downes, M.6
Evans, R.M.7
-
37
-
-
84864705801
-
Inhibiting adipose tissue lipogenesis reprograms ther-mogenesis and PPAR7 activation to decrease diet-induced obesity
-
Lodhi, I. J., Yin, L., Jensen-Urstad, A. P., Funai, K., Coleman, T., Baird, J.H., El Ramahi, M. K., Razani, B., Song, H., Fu-Hsu, F., Turk, J., and Semenk-ovich, C. F. (2012) Inhibiting adipose tissue lipogenesis reprograms ther-mogenesis and PPAR7 activation to decrease diet-induced obesity. Cell Metab. 16, 189-201
-
(2012)
Cell Metab.
, vol.16
, pp. 189-201
-
-
Lodhi, I.J.1
Yin, L.2
Jensen-Urstad, A.P.3
Funai, K.4
Coleman, T.5
Baird, J.H.6
El Ramahi, M.K.7
Razani, B.8
Song, H.9
Fu-Hsu, F.10
Turk, J.11
Semenk-Ovich, C.F.12
-
38
-
-
0037453718
-
Peroxisome-proliferator-activated receptor S activates fat metabolism to prevent obesity
-
Wang, Y. X., Lee, C. H., Tiep, S., Yu, R. T., Ham, J., Kang, H., and Evans, R. M. (2003) Peroxisome-proliferator-activated receptor S activates fat metabolism to prevent obesity. Cell 113, 159-170
-
(2003)
Cell
, vol.113
, pp. 159-170
-
-
Wang, Y.X.1
Lee, C.H.2
Tiep, S.3
Yu, R.T.4
Ham, J.5
Kang, H.6
Evans, R.M.7
-
39
-
-
84907977576
-
A missing link in body weight homeostasis: The catabolic signal of the overfed state
-
Ravussin, Y., Leibel, R. L., and Ferrante, A. W., Jr. (2014) A missing link in body weight homeostasis: the catabolic signal of the overfed state. Cell Metab. 20, 565-572
-
(2014)
Cell Metab.
, vol.20
, pp. 565-572
-
-
Ravussin, Y.1
Leibel, R.L.2
Ferrante, A.W.3
-
40
-
-
2442659256
-
Adiponectin acts in the brain to decrease body weight
-
Qi, Y., Takahashi, N, Hileman, S. M., Patel, H. R., Berg, A. H., Pajvani, U. B., Scherer, P. E., and Ahima, R. S. (2004) Adiponectin acts in the brain to decrease body weight. Nat. Med. 10, 524-529
-
(2004)
Nat. Med.
, vol.10
, pp. 524-529
-
-
Qi, Y.1
Takahashi, N.2
Hileman, S.M.3
Patel, H.R.4
Berg, A.H.5
Pajvani, U.B.6
Scherer, P.E.7
Ahima, R.S.8
-
41
-
-
84877272187
-
An FGF21-adiponectin-ceramide axis controls energy expenditure and insulin action in mice
-
Holland, W. L., Adams, A. C, Brozinick, J. T., Bui, H. H., Miyauchi, Y., Kusminski, C. M., Bauer, S. M., Wade, M., Singhal, E., Cheng, C C, Volk, K., Kuo, M. S., Gordillo, R., Kharitonenkov, A., and Scherer, P. E. (2013) An FGF21-adiponectin-ceramide axis controls energy expenditure and insulin action in mice. CellMetab. 17, 790-797
-
(2013)
CellMetab.
, vol.17
, pp. 790-797
-
-
Holland, W.L.1
Adams, A.C.2
Brozinick, J.T.3
Bui, H.H.4
Miyauchi, Y.5
Kusminski, C.M.6
Bauer, S.M.7
Wade, M.8
Singhal, E.9
Cheng, C.C.10
Volk, K.11
Kuo, M.S.12
Gordillo, R.13
Kharitonenkov, A.14
Scherer, P.E.15
|