Literature DB >> 16501878

Fusion and fission, the evolution of sterol carrier protein-2.

Johan Edqvist1, Kristina Blomqvist.   

Abstract

Sterol carrier protein-2 (SCP-2) is an intracellular, small, basic protein domain that in vitro enhances the transfer of lipids between membranes. It is expressed in bacteria, archaea, and eukaryotes. There are five human genes, HSD17B4, SCPX, HSDL2 STOML1, and C20orf79, which encode SCP-2. HSD17B4, SCPX, HSDL2, and STOML1 encode fusion proteins with SCP-2 downstream of another protein domain, whereas C20orf79 encodes an unfused SCP-2. We have extracted SCP-2 domains from databases and analyzed the evolution of the eukaryotic SCP-2. We show that SCPX and HSDL2 are present in most animals from Cnidaria to Chordata. STOML1 are present in nematodes and more advanced animals. HSD17B4 which encodes a D-bifunctional protein (DBP) with domains for D-3-hydroxyacyl-CoA dehydrogenase, enoyl-CoA hydratase, and SCP-2 are found in animals from insects to mammals and also in fungi. Nematodes, amoebas, ciliates, apicomplexans, and oomycetes express an alternative DBP with the SCP-2 domain directly connected to the D-3-hydroxyacyl-CoA dehydrogenase. This fusion has not been retained in plant genomes, which solely express unfused SCP-2 domains. Proteins carrying unfused SCP-2 domains are also encoded in bacteria, archaea, ciliates, fungi, insects, nematodes, and vertebrates. Our results indicate that the fusion between D-3-hydroxyacyl-CoA dehydrogenase and SCP-2 was formed early during eukaryotic evolution. There have since been several gene fission events where genes encoding unfused SCP-2 domains have been formed, as well as gene fusion events placing the SCP-2 domain in novel protein domain contexts.

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Year:  2006        PMID: 16501878     DOI: 10.1007/s00239-005-0086-3

Source DB:  PubMed          Journal:  J Mol Evol        ISSN: 0022-2844            Impact factor:   2.395


  44 in total

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Review 3.  Sterol carrier protein-2.

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Review 4.  Gene structure, intracellular localization, and functional roles of sterol carrier protein-2.

Authors:  A M Gallegos; B P Atshaves; S M Storey; O Starodub; A D Petrescu; H Huang; A L McIntosh; G G Martin; H Chao; A B Kier; F Schroeder
Journal:  Prog Lipid Res       Date:  2001-11       Impact factor: 16.195

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7.  Characterization of a non-specific lipid transfer protein associated with the peroxisomal membrane of the yeast, Saccharomyces cerevisiae.

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8.  Expression of a sterol carrier protein-x gene in the yellow fever mosquito, Aedes aegypti.

Authors:  Q Lan; V Wessely
Journal:  Insect Mol Biol       Date:  2004-10       Impact factor: 3.585

9.  Human sterol carrier protein x/sterol carrier protein 2 gene has two promoters.

Authors:  T Ohba; J A Holt; J T Billheimer; J F Strauss
Journal:  Biochemistry       Date:  1995-08-22       Impact factor: 3.162

10.  A molecular timescale of eukaryote evolution and the rise of complex multicellular life.

Authors:  S Blair Hedges; Jaime E Blair; Maria L Venturi; Jason L Shoe
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  13 in total

1.  NMR and X-ray structures of the putative sterol carrier protein 2 from Thermus thermophilus HB8 show conformational changes.

Authors:  Alexander K Goroncy; Kazutaka Murayama; Mikako Shirouzu; Seiki Kuramitsu; Takanori Kigawa; Shigeyuki Yokoyama
Journal:  J Struct Funct Genomics       Date:  2010-10-05

Review 2.  Sterol transport in yeast and the oxysterol binding protein homologue (OSH) family.

Authors:  Timothy A Schulz; William A Prinz
Journal:  Biochim Biophys Acta       Date:  2007-03-16

3.  Suppressing a Putative Sterol Carrier Gene Reduces Plasmodesmal Permeability and Activates Sucrose Transporter Genes during Cotton Fiber Elongation.

Authors:  Zhiyuan Zhang; Yong-Ling Ruan; Na Zhou; Fang Wang; Xueying Guan; Lei Fang; Xiaoguang Shang; Wangzhen Guo; Shuijin Zhu; Tianzhen Zhang
Journal:  Plant Cell       Date:  2017-07-26       Impact factor: 11.277

4.  Evolution of function of a fused metazoan tRNA synthetase.

Authors:  Partho Sarothi Ray; James C Sullivan; Jie Jia; John Francis; John R Finnerty; Paul L Fox
Journal:  Mol Biol Evol       Date:  2010-09-09       Impact factor: 16.240

5.  Identification, localization, and functional implications of the microdomain-forming stomatin family in the ciliated protozoan Paramecium tetraurelia.

Authors:  Alexander T Reuter; Claudia A O Stuermer; Helmut Plattner
Journal:  Eukaryot Cell       Date:  2013-02-02

6.  Fatty acid transfer from Yarrowia lipolytica sterol carrier protein 2 to phospholipid membranes.

Authors:  Lisandro J Falomir Lockhart; Noelia I Burgardt; Raúl G Ferreyra; Marcelo Ceolin; Mario R Ermácora; Betina Córsico
Journal:  Biophys J       Date:  2009-07-08       Impact factor: 4.033

7.  The crystal structure of sterol carrier protein 2 from Yarrowia lipolytica and the evolutionary conservation of a large, non-specific lipid-binding cavity.

Authors:  Federico Perez De Berti; Stefano Capaldi; Raúl Ferreyra; Noelia Burgardt; Juan P Acierno; Sebastián Klinke; Hugo L Monaco; Mario R Ermácora
Journal:  J Struct Funct Genomics       Date:  2013-11-17

8.  Role of an ancestral d-bifunctional protein containing two sterol-carrier protein-2 domains in lipid uptake and trafficking in Toxoplasma.

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Journal:  Mol Biol Cell       Date:  2008-11-12       Impact factor: 4.138

9.  Arabidopsis sterol carrier protein-2 is required for normal development of seeds and seedlings.

Authors:  Bing Song Zheng; Elin Rönnberg; Lenita Viitanen; Tiina A Salminen; Krister Lundgren; Thomas Moritz; Johan Edqvist
Journal:  J Exp Bot       Date:  2008-08-06       Impact factor: 6.992

10.  Transcriptional profiling uncovers a network of cholesterol-responsive atherosclerosis target genes.

Authors:  Josefin Skogsberg; Jesper Lundström; Alexander Kovacs; Roland Nilsson; Peri Noori; Shohreh Maleki; Marina Köhler; Anders Hamsten; Jesper Tegnér; Johan Björkegren
Journal:  PLoS Genet       Date:  2008-03-14       Impact factor: 5.917

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