India Environment Portal | News, reports, documents, blogs, data, analysis on environment & development | India, South Asia
Published on India Environment Portal | News, reports, documents, blogs, data, analysis on environment & development | India, South Asia (http://admin.indiaenvironmentportal.org.in)

Home > Featured Articles > Increased lipolysis and altered lipid homeostasis protect γ-synuclein–null mutant mice from diet-induced obesity > Increased lipolysis and altered lipid homeostasis protect γ-synuclein–null mutant mice from diet-induced obesity

Increased lipolysis and altered lipid homeostasis protect γ-synuclein–null mutant mice from diet-induced obesity [1]

Synucleins are a family of homologous proteins principally known for their involvement in neurodegeneration. γ-Synuclein is highly expressed in human white adipose tissue and increased in obesity. Here we show that γ-synuclein is nutritionally regulated in white adipose tissue whereas its loss partially protects mice from high-fat diet (HFD)–induced obesity and ameliorates some of the associated metabolic complications. Compared with HFD-fed WT mice, HFD-fed γ-synuclein–null mutant mice display increased lipolysis, lipid oxidation, and energy expenditure, and reduced adipocyte hypertrophy. Knockdown of γ-synuclein in adipocytes causes redistribution of the key lipolytic enzyme ATGL to lipid droplets and increases lipolysis. γ-Synuclein–deficient adipocytes also contain fewer SNARE complexes of a type involved in lipid droplet fusion. We hypothesize that γ-synuclein may deliver SNAP-23 to the SNARE complexes under lipogenic conditions. Via these independent but complementary roles, γ-synuclein may coordinately modulate lipid storage by influencing lipolysis and lipid droplet formation. Our data reveal γ-synuclein as a regulator of lipid handling in adipocytes, the function of which is particularly important in conditions of nutrient excess.

Publication Date: 
18/12/2012
Steven Millership [2], Natalia Ninkina [3], Irina A. Guschina & et al [4]
Proceedings of the National Academy of Sciences [5]
109
51
20943–20948
Tags:
Obesity [6], Research [7]
Centre for Science and Environment
National Knowledge Commission Government of India

Technology Partners: MimirTech


India Environment Portal by Centre for Science and Environment is licensed under a Creative Commons Attribution-Share Alike 2.5 India License.


Source URL: http://admin.indiaenvironmentportal.org.in/feature-article/increased-lipolysis-and-altered-lipid-homeostasis-protect-%CE%B3-synuclein%E2%80%93null-mutant

Links:
[1] http://admin.indiaenvironmentportal.org.in/feature-article/increased-lipolysis-and-altered-lipid-homeostasis-protect-%CE%B3-synuclein%E2%80%93null-mutant
[2] http://admin.indiaenvironmentportal.org.in/category/author/steven-millership
[3] http://admin.indiaenvironmentportal.org.in/category/author/natalia-ninkina
[4] http://admin.indiaenvironmentportal.org.in/category/author/irina-guschina-et-al
[5] http://admin.indiaenvironmentportal.org.in/category/journal/proceedings-national-academy-sciences
[6] http://admin.indiaenvironmentportal.org.in/category/thesaurus/obesity
[7] http://admin.indiaenvironmentportal.org.in/category/thesaurus/research