Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle

<p>Abstract</p> <p>Background</p> <p>Cattle and other ruminants have evolved the ability to derive most of their metabolic energy requirement from otherwise indigestible plant matter through a symbiotic relationship with plant fibre degrading microbes within a specialis...

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Main Authors: McEwan John C, Bingle Colin D, Maqbool Nauman J, Hood Kylie A, Wheeler Thomas T, Zhao Shaying
Format: Article
Language:English
Published: BMC 2007-03-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/8/75
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spelling doaj-a5a8d9f6505241da857726cdd69634332020-11-25T00:38:33ZengBMCBMC Genomics1471-21642007-03-01817510.1186/1471-2164-8-75Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattleMcEwan John CBingle Colin DMaqbool Nauman JHood Kylie AWheeler Thomas TZhao Shaying<p>Abstract</p> <p>Background</p> <p>Cattle and other ruminants have evolved the ability to derive most of their metabolic energy requirement from otherwise indigestible plant matter through a symbiotic relationship with plant fibre degrading microbes within a specialised fermentation chamber, the rumen. The genetic changes underlying the evolution of the ruminant lifestyle are poorly understood. The BPI-like locus encodes several putative innate immune proteins, expressed predominantly in the oral cavity and airways, which are structurally related to Bactericidal/Permeability Increasing protein (BPI). We have previously reported the expression of variant BPI-like proteins in cattle (Biochim Biophys Acta 2002, 1579, 92–100). Characterisation of the BPI-like locus in cattle would lead to a better understanding of the role of the BPI-like proteins in cattle physiology</p> <p>Results</p> <p>We have sequenced and characterised a 722 kbp segment of BTA13 containing the bovine BPI-like protein locus. Nine of the 13 contiguous BPI-like genes in the locus in cattle are orthologous to genes in the human and mouse locus, and are thought to play a role in host defence. Phylogenetic analysis indicates the remaining four genes, which we have named BSP30A, BSP30B, BSP30C and BSP30D, appear to have arisen in cattle through a series of duplications. The transcripts of the four BSP30 genes are most abundant in tissues associated with the oral cavity and airways. BSP30C transcripts are also found in the abomasum. This, as well as the ratios of non-synonymous to synonymous differences between pairs of the BSP30 genes, is consistent with at least BSP30C having acquired a distinct function from the other BSP30 proteins and from its paralog in human and mouse, parotid secretory protein (PSP).</p> <p>Conclusion</p> <p>The BPI-like locus in mammals appears to have evolved rapidly through multiple gene duplication events, and is thus a hot spot for genome evolution. It is possible that BSP30 gene duplication is a characteristic feature of ruminants and that the BSP30 proteins contribute to an aspect of ruminant-specific physiology.</p> http://www.biomedcentral.com/1471-2164/8/75
collection DOAJ
language English
format Article
sources DOAJ
author McEwan John C
Bingle Colin D
Maqbool Nauman J
Hood Kylie A
Wheeler Thomas T
Zhao Shaying
spellingShingle McEwan John C
Bingle Colin D
Maqbool Nauman J
Hood Kylie A
Wheeler Thomas T
Zhao Shaying
Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle
BMC Genomics
author_facet McEwan John C
Bingle Colin D
Maqbool Nauman J
Hood Kylie A
Wheeler Thomas T
Zhao Shaying
author_sort McEwan John C
title Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle
title_short Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle
title_full Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle
title_fullStr Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle
title_full_unstemmed Expansion of the Bactericidal/Permeability Increasing-like (BPI-like) protein locus in cattle
title_sort expansion of the bactericidal/permeability increasing-like (bpi-like) protein locus in cattle
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2007-03-01
description <p>Abstract</p> <p>Background</p> <p>Cattle and other ruminants have evolved the ability to derive most of their metabolic energy requirement from otherwise indigestible plant matter through a symbiotic relationship with plant fibre degrading microbes within a specialised fermentation chamber, the rumen. The genetic changes underlying the evolution of the ruminant lifestyle are poorly understood. The BPI-like locus encodes several putative innate immune proteins, expressed predominantly in the oral cavity and airways, which are structurally related to Bactericidal/Permeability Increasing protein (BPI). We have previously reported the expression of variant BPI-like proteins in cattle (Biochim Biophys Acta 2002, 1579, 92–100). Characterisation of the BPI-like locus in cattle would lead to a better understanding of the role of the BPI-like proteins in cattle physiology</p> <p>Results</p> <p>We have sequenced and characterised a 722 kbp segment of BTA13 containing the bovine BPI-like protein locus. Nine of the 13 contiguous BPI-like genes in the locus in cattle are orthologous to genes in the human and mouse locus, and are thought to play a role in host defence. Phylogenetic analysis indicates the remaining four genes, which we have named BSP30A, BSP30B, BSP30C and BSP30D, appear to have arisen in cattle through a series of duplications. The transcripts of the four BSP30 genes are most abundant in tissues associated with the oral cavity and airways. BSP30C transcripts are also found in the abomasum. This, as well as the ratios of non-synonymous to synonymous differences between pairs of the BSP30 genes, is consistent with at least BSP30C having acquired a distinct function from the other BSP30 proteins and from its paralog in human and mouse, parotid secretory protein (PSP).</p> <p>Conclusion</p> <p>The BPI-like locus in mammals appears to have evolved rapidly through multiple gene duplication events, and is thus a hot spot for genome evolution. It is possible that BSP30 gene duplication is a characteristic feature of ruminants and that the BSP30 proteins contribute to an aspect of ruminant-specific physiology.</p>
url http://www.biomedcentral.com/1471-2164/8/75
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