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Published on: September 4, 2012
A SNP in intron 8 of CD46 causes a novel transcript associated with mastitis in Holsteins
Xiuge Wang, Jifeng Zhong, Yundong Gao
1Dairy Cattle Research Center, Shandong Academy of Agricultural Sciences, No,159 North of Industry Road, Jinan, Shandong 250131, China. huangjinm@sina.com.
Background:
The membrane protein CD46, a ubiquitous cell surface pathogen receptor, can bind Streptococcus to trigger cell autophagy, which is a critical step in the control of infection.
Results:
In this study, we found a new splice variant designated CD46 transcript variant (CD46-TV). The splice variant is characterized by the retention of a 48 bp sequence from intron 8 of the bovine CD46 gene, which encodes a putative protein enlarged by 16 amino acids. CD46-TV mRNA was found to be over expressed in mastitis-infected mammary gland tissues relative to healthy tissues. A single nucleotide polymorphism (c. 1033 + 2184 C > T) in the exonic splicing enhancer (ESE) motif region was shown to result in the CD46-TV aberrant splice variant through constructing alternative alleles using the pSPL3 exon capturing vector and transfecting these into 293 T cells. Allelic frequency in 56,682 individuals belonging to 112 Bos taurus, Bos indicus, Bos javanicus, Bos grunniens and Bos mutus, etc. suggests that the C allele (80.09%) is the ancestral allele. Association analysis found that the mean genomic estimated breeding values (gEBV) for milk somatic cell score and the occurrence of clinical mastitis, as well as the milk somatic cell score of Chinese Holsteins with the CT genotype was lower than those of individuals with either the CC or TT genotypes. The mean gEBV for udder health synthesis for the TT genotype was greater than those for the CC or CT genotypes.
Conclusions:
Our findings suggest that the CD46 gene likely plays a critical role in the risk of mastitis caused by Streptococcus in dairy cows via an alternative splicing mechanism caused by a functional mutation in intron 8. Our data also underline the importance of variation within ESEs in regulating transcript processing.
Insights
A novel CD46 splice variant (CD46-TV) is overexpressed in mastitis-infected cows. A specific mutation influences mastitis risk and udder health, highlighting CD46
Area of Science:
- Genetics
- Molecular Biology
- Animal Science
Background:
- CD46 is a cell surface receptor that binds pathogens like Streptococcus, initiating autophagy for infection control.
- Autophagy is crucial for managing infections, involving cellular self-degradation processes.
Purpose of the Study:
- To identify and characterize novel splice variants of the CD46 gene.
- To investigate the role of a specific CD46 splice variant and its associated genetic variations in mastitis susceptibility in dairy cows.
Main Methods:
- Identification of a new CD46 splice variant (CD46-TV) by analyzing bovine CD46 gene sequences.
- Utilizing pSPL3 exon capturing vectors and 293T cell transfection to study the functional impact of a single nucleotide polymorphism (SNP) in an exonic splicing enhancer (ESE) region.
- Conducting association analysis of the SNP with genomic estimated breeding values (gEBV) for mastitis-related traits in a large cohort of cattle.
Main Results:
- A novel splice variant, CD46-TV, characterized by retained intron 8 sequence, was identified and found to be overexpressed in mastitis-infected mammary tissues.
- A SNP (c.1033+2184 C>T) within an ESE motif was demonstrated to cause the aberrant CD46-TV splicing.
- Association analysis revealed that the CT genotype was linked to lower milk somatic cell scores and reduced clinical mastitis occurrence, while the TT genotype was associated with greater udder health synthesis gEBV.
Conclusions:
- The CD46 gene, through alternative splicing induced by a functional mutation in intron 8, plays a significant role in Streptococcus-induced mastitis risk in dairy cows.
- Variations within exonic splicing enhancers (ESEs) are critical regulators of transcript processing and can impact disease susceptibility.
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