Literature DB >> 28792859

Elucidating the role of plexin D1 in body fat distribution and susceptibility to metabolic disease using a zebrafish model system.

James E N Minchin1,2, John F Rawls1.   

Abstract

Non-communicable diseases (NCDs) such as cardiovascular disease, diabetes and cancer were responsible for 68% of all deaths worldwide in 2012. The regional distribution of lipid deposited within adipose tissue (AT) - so called body fat distribution (BFD) - is a strong risk factor for NCDs. BFD is highly heritable; however, the genetic basis of BFD is almost entirely unknown. Genome-wide association studies have identified several loci associated with BFD, including at Plexin D1 (PLXND1) - a gene known to modulate angiogenesis. We recently demonstrated that zebrafish homozygous for a null mutation in plxnd1 had a reduced capacity to store lipid in visceral AT (VAT) leading to altered BFD. Moreover, we found that type V collagens were upregulated in plxnd1 mutants, and mediated the inhibitory effect of Plxnd1 on VAT growth. These results strengthen evidence that Plxnd1 influences BFD in human populations, and validate zebrafish as a model to study BFD. However, many pertinent questions remain unanswered. Here we outline potential Plxnd1 mechanisms of action in AT, and describe the genetic architecture at human PLXND1 that is associated with BFD and NCD susceptibility.

Entities:  

Keywords:  adipose tissue; body fat distribution; genomewide association studies; zebrafish

Mesh:

Substances:

Year:  2017        PMID: 28792859      PMCID: PMC5736248          DOI: 10.1080/21623945.2017.1356504

Source DB:  PubMed          Journal:  Adipocyte        ISSN: 2162-3945            Impact factor:   4.534


  66 in total

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3.  SHARPIN regulates collagen architecture and ductal outgrowth in the developing mouse mammary gland.

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Journal:  EMBO J       Date:  2016-12-14       Impact factor: 11.598

4.  Semaphorin 3E initiates antiangiogenic signaling through plexin D1 by regulating Arf6 and R-Ras.

Authors:  Atsuko Sakurai; Julie Gavard; Yuliya Annas-Linhares; John R Basile; Panomwat Amornphimoltham; Todd R Palmby; Hiroshi Yagi; Fan Zhang; Paul A Randazzo; Xuri Li; Roberto Weigert; J Silvio Gutkind
Journal:  Mol Cell Biol       Date:  2010-04-12       Impact factor: 4.272

5.  Depot-specific differences and insufficient subcutaneous adipose tissue angiogenesis in human obesity.

Authors:  Olga Gealekman; Nina Guseva; Celia Hartigan; Sarah Apotheker; Matthew Gorgoglione; Kunal Gurav; Khan-Van Tran; Juerg Straubhaar; Sarah Nicoloro; Michael P Czech; Michael Thompson; Richard A Perugini; Silvia Corvera
Journal:  Circulation       Date:  2011-01-03       Impact factor: 29.690

Review 6.  Extracellular matrix and cell signalling: the dynamic cooperation of integrin, proteoglycan and growth factor receptor.

Authors:  Soo-Hyun Kim; Jeremy Turnbull; Scott Guimond
Journal:  J Endocrinol       Date:  2011-02-09       Impact factor: 4.286

7.  Adipose tissue mass can be regulated through the vasculature.

Authors:  Maria A Rupnick; Dipak Panigrahy; Chen-Yu Zhang; Susan M Dallabrida; Bradford B Lowell; Robert Langer; M Judah Folkman
Journal:  Proc Natl Acad Sci U S A       Date:  2002-07-29       Impact factor: 11.205

8.  Molecular signatures of tissue-specific microvascular endothelial cell heterogeneity in organ maintenance and regeneration.

Authors:  Daniel J Nolan; Michael Ginsberg; Edo Israely; Brisa Palikuqi; Michael G Poulos; Daylon James; Bi-Sen Ding; William Schachterle; Ying Liu; Zev Rosenwaks; Jason M Butler; Jenny Xiang; Arash Rafii; Koji Shido; Sina Y Rabbany; Olivier Elemento; Shahin Rafii
Journal:  Dev Cell       Date:  2013-07-18       Impact factor: 12.270

9.  Arf6 regulates tumour angiogenesis and growth through HGF-induced endothelial β1 integrin recycling.

Authors:  Tsunaki Hongu; Yuji Funakoshi; Shigetomo Fukuhara; Teruhiko Suzuki; Susumu Sakimoto; Nobuyuki Takakura; Masatsugu Ema; Satoru Takahashi; Susumu Itoh; Mitsuyasu Kato; Hiroshi Hasegawa; Naoki Mochizuki; Yasunori Kanaho
Journal:  Nat Commun       Date:  2015-08-04       Impact factor: 14.919

10.  A classification system for zebrafish adipose tissues.

Authors:  James E N Minchin; John F Rawls
Journal:  Dis Model Mech       Date:  2017-03-27       Impact factor: 5.758

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  3 in total

1.  Deep phenotyping in zebrafish reveals genetic and diet-induced adiposity changes that may inform disease risk.

Authors:  James E N Minchin; Catherine M Scahill; Nicole Staudt; Elisabeth M Busch-Nentwich; John F Rawls
Journal:  J Lipid Res       Date:  2018-05-23       Impact factor: 5.922

2.  Quantitative analyses of adiposity dynamics in zebrafish.

Authors:  Loes M H Elemans; Iris Pruñonosa Cervera; Susanna E Riley; Rebecca Wafer; Rosalyn Fong; Panna Tandon; James E N Minchin
Journal:  Adipocyte       Date:  2019-12       Impact factor: 4.534

3.  Gene Expression Profiling of MicroRNAs in HPV-Induced Warts and Normal Skin.

Authors:  Laith N Al-Eitan; Mansour A Alghamdi; Amneh H Tarkhan; Firas A Al-Qarqaz
Journal:  Biomolecules       Date:  2019-11-21
  3 in total

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