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Kamal Rahmouni
Author PubWeight™ 66.00
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Top papers
Rank
Title
Journal
Year
PubWeight™
‹?›
1
A guide to analysis of mouse energy metabolism.
Nat Methods
2011
3.82
2
The central melanocortin system directly controls peripheral lipid metabolism.
J Clin Invest
2007
2.97
3
Hypothalamic AMPK and fatty acid metabolism mediate thyroid regulation of energy balance.
Nat Med
2010
2.76
4
A knockin mouse model of the Bardet-Biedl syndrome 1 M390R mutation has cilia defects, ventriculomegaly, retinopathy, and obesity.
Proc Natl Acad Sci U S A
2007
2.36
5
The brain Renin-angiotensin system controls divergent efferent mechanisms to regulate fluid and energy balance.
Cell Metab
2010
2.26
6
BMP8B increases brown adipose tissue thermogenesis through both central and peripheral actions.
Cell
2012
2.20
7
Requirement of Bardet-Biedl syndrome proteins for leptin receptor signaling.
Hum Mol Genet
2009
2.16
8
Mkks-null mice have a phenotype resembling Bardet-Biedl syndrome.
Hum Mol Genet
2005
2.04
9
The ion channel ASIC2 is required for baroreceptor and autonomic control of the circulation.
Neuron
2009
1.97
10
SIRT1 deacetylase in POMC neurons is required for homeostatic defenses against diet-induced obesity.
Cell Metab
2010
1.64
11
Central melanin-concentrating hormone influences liver and adipose metabolism via specific hypothalamic nuclei and efferent autonomic/JNK1 pathways.
Gastroenterology
2012
1.58
12
Direct control of peripheral lipid deposition by CNS GLP-1 receptor signaling is mediated by the sympathetic nervous system and blunted in diet-induced obesity.
J Neurosci
2009
1.54
13
Amylin acts in the central nervous system to increase sympathetic nerve activity.
Endocrinology
2013
1.47
14
Selective leptin resistance: a new concept in leptin physiology with cardiovascular implications.
J Hypertens
2002
1.45
15
Enhanced leptin-stimulated Pi3k activation in the CNS promotes white adipose tissue transdifferentiation.
Cell Metab
2007
1.39
16
The concept of selective leptin resistance: evidence from agouti yellow obese mice.
Diabetes
2002
1.37
17
Bardet-Biedl syndrome 3 (Bbs3) knockout mouse model reveals common BBS-associated phenotypes and Bbs3 unique phenotypes.
Proc Natl Acad Sci U S A
2011
1.32
18
Direct control of brown adipose tissue thermogenesis by central nervous system glucagon-like peptide-1 receptor signaling.
Diabetes
2012
1.29
19
Ablation of the leptin receptor in the hypothalamic arcuate nucleus abrogates leptin-induced sympathetic activation.
Circ Res
2011
1.27
20
Glucose depletion in the airway surface liquid is essential for sterility of the airways.
PLoS One
2011
1.26
21
Leptin signaling in the nucleus tractus solitarii increases sympathetic nerve activity to the kidney.
Hypertension
2008
1.23
22
Mechanisms mediating renal sympathetic activation to leptin in obesity.
Am J Physiol Regul Integr Comp Physiol
2008
1.20
23
A brain leptin-renin angiotensin system interaction in the regulation of sympathetic nerve activity.
Am J Physiol Heart Circ Physiol
2012
1.14
24
Obesity-associated hypertension: recent progress in deciphering the pathogenesis.
Hypertension
2014
1.06
25
Hypothalamic mTORC1 signaling controls sympathetic nerve activity and arterial pressure and mediates leptin effects.
Cell Metab
2013
1.05
26
Role of leptin in the cardiovascular and endocrine complications of metabolic syndrome.
Diabetes Obes Metab
2006
1.04
27
The -20 and -217 promoter variants dominate differential angiotensinogen haplotype regulation in angiotensinogen-expressing cells.
Hypertension
2007
1.03
28
The brain and brown fat.
Ann Med
2014
1.02
29
Molecular basis of the obesity associated with Bardet-Biedl syndrome.
Trends Endocrinol Metab
2011
1.01
30
Metabolic rate regulation by the renin-angiotensin system: brain vs. body.
Pflugers Arch
2012
0.99
31
Differential effects of insulin on sympathetic nerve activity in agouti obese mice.
J Hypertens
2010
0.98
32
Involvement of hypothalamic AMP-activated protein kinase in leptin-induced sympathetic nerve activation.
PLoS One
2013
0.92
33
Loss of leptin actions in obesity: two concepts with cardiovascular implications.
Clin Exp Hypertens
2005
0.90
34
Cardiovascular and sympathetic effects of disrupting tyrosine 985 of the leptin receptor.
Hypertension
2011
0.89
35
Neuronal receptor activity-modifying protein 1 promotes energy expenditure in mice.
Diabetes
2011
0.86
36
The role of hypothalamic mTORC1 signaling in insulin regulation of food intake, body weight, and sympathetic nerve activity in male mice.
Endocrinology
2015
0.86
37
Ectopic expression of human BBS4 can rescue Bardet-Biedl syndrome phenotypes in Bbs4 null mice.
PLoS One
2013
0.84
38
Obesity, sympathetic overdrive, and hypertension: the leptin connection.
Hypertension
2010
0.83
39
Neuroanatomical determinants of the sympathetic nerve responses evoked by leptin.
Clin Auton Res
2012
0.82
40
Metabolic control by S6 kinases depends on dietary lipids.
PLoS One
2012
0.82
41
PI3K signaling: A key pathway in the control of sympathetic traffic and arterial pressure by leptin.
Mol Metab
2013
0.82
42
Inactivation of Bardet-Biedl syndrome genes causes kidney defects.
Am J Physiol Renal Physiol
2010
0.81
43
Id3, E47, and SREBP-1c: fat factors controlling adiponectin expression.
Circ Res
2008
0.81
44
Contrasting vascular effects caused by loss of Bardet-Biedl syndrome genes.
Am J Physiol Heart Circ Physiol
2010
0.79
45
K(ATP)-channel-dependent regulation of catecholaminergic neurons controls BAT sympathetic nerve activity and energy homeostasis.
Cell Metab
2013
0.78
46
Prolonged treatment with angiotensin 1-7 improves endothelial function in diet-induced obesity.
J Hypertens
2013
0.76
47
Sympathetic inhibition after bariatric surgery.
Hypertension
2014
0.76
48
Sympathetic tone in the young: the mother weighs in.
Hypertension
2009
0.76
49
The adipose/circulating renin-angiotensin system cross-talk enters a new dimension.
Hypertension
2012
0.76
50
Editorial focus: A fat contribution to RAS activation and blood pressure control: evidence from angiotensinogen conditional null mice. Focus on: "Adipocyte-specific deficiency of angiotensinogen decreases plasma angiotensinogen concentration and systolic blood pressure in mice.".
Am J Physiol Regul Integr Comp Physiol
2011
0.75
51
Does genetic variation in the leptin receptor influence the sympathetic tone in obesity?
Hypertens Res
2008
0.75
52
Angiotensin AT1A receptors on leptin receptor-expressing cells control resting metabolism.
J Clin Invest
2017
0.75