Calves severely affected by bovine respiratory disease have reduced protection against histone toxicity and exhibit lower complement activity

Author:

Flores Victor V1,Hernandez Gifford Jennifer A1,Soto-Navarro Sergio A1,Matera Julia2,Wilson Blake K2ORCID,Hartson Steven3,Byrum Stephanie D4,Gifford Craig A5

Affiliation:

1. Department of Range and Animal Sciences, New Mexico State University , Las Cruces, NM, 88003 , USA

2. Department of Animal and Food Sciences, Oklahoma State University , Stillwater, OK 74078 , USA

3. Department of Biochemistry and Molecular Biology, Oklahoma State University , Stillwater, OK 74078 , USA

4. Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences , Little Rock, AR 72205 , USA

5. Extension Animal Sciences and Natural Resources, New Mexico State University , Las Cruces NM 88003 , USA

Abstract

Abstract Bovine respiratory disease (BRD) remains the greatest challenge facing the beef industry. Calves affected by BRD can manifest illness ranging from subclinical infection to acute death. In pathologies similar to BRD, extracellular histones have been implicated as major contributors to lung tissue damage. Histones are basic proteins responsible for DNA organization in cell nuclei, however when released extracellularly during cell injury or via neutrophil activation they become cytotoxic. Cattle suffering severe cases of BRD demonstrate reduced capacity to protect against the cytotoxic effects of histones, however, the protective mechanism(s) of serum remain(s) unknown. Therefore, the objective was to identify components within serum that contribute to protection against histone toxicity. Serum proteins from animals considered protective (P; N = 4) and nonprotective (NP; N = 4) against the toxic effects of histones were precipitated by the addition and incubation of exogenous histones. Proteins that interact with histones from both groups were isolated by sodium dodecyl sulfate–polyacrylamide gel electrophoresis and identified via label free “shotgun” proteomics. Sixteen candidate proteins increased by ≥2-fold change in P vs. NP animals were identified, with several associated with the complement system. A subsequent study was conducted to evaluate complement system activity and serum protective capacity against exogenous histones in feedlot heifers. Serum samples were collected from 118 heifer calves (BW at arrival = 229 ± 2.4 kg) at feedlot arrival. Animals were retrospectively assigned to groups consisting of: calves not requiring treatment with antibiotics for BRD (CONT; N = 80), calves treated once (1TRT; N = 21), calves treated twice (2TRT; N = 5), calves treated thrice (3TRT; N = 3), or calves that died from BRD within 1 wk of entering the feedlot (DA; N = 9). Serum from DA animals was less protective than CONT (P = 0.0005) animals against histone toxicity. Complement activity of DA animals was reduced compared to CONT (P = 0.0044) animals. Additionally, the use of both assays as a ratio resulted in increased ability to detect DA animals. Results suggest that cattle predisposed to severe cases of respiratory disease may have impaired complement activity presumably contributing to reduced protective capacity against histone toxicity.

Funder

Agricultural Experiment Station, New Mexico State University

National Institute of Food and Agriculture

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics,Animal Science and Zoology,General Medicine,Food Science

Reference30 articles.

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