Have a personal or library account? Click to login
Expression of calmodulin-related genes in lead-exposed mice Cover

Expression of calmodulin-related genes in lead-exposed mice

Open Access
|Mar 2016

References

  1. Bussolaro D, Filipak NF, Gargioni R, Fernandes LC, Randi MA, Pelletier E. (2008). The immune response of peritoneal macrophages due to exposure to inorganic lead in the house mouse Mus musculus. Toxicol In Vitro22: 254–260.
  2. Chen YY, Lee MH, Hs u CC, Wei CL, Tsai YC. (2012). Methyl cinnamate inhibits adipocyte differentiation via activation of the CaMKK2-AMPK pathway in 3T3 -L1 preadipocytes. J Agric Food Chem60: 955–963.
  3. Cui Y, Zhu YG, Zhai R, Huang Y, Qiu Y, Liang J. (2005). Exposure to metal mixtures and human health impacts in a contaminated area in Nanning, China. Environ Int31: 784–790.
  4. DeLuca J, Hardy CA, Burright RG, Donovick PJ, Tuggy RL. (1982). The effects of dietary fat and lead ingestion on blood lead levels in mice. J Toxicol Environ Health3: 441–447.
  5. Fernandis AZ, Cherla RP, Ganju RK. (2003). Differential regulation of CXCR4-mediated T-cell chemotaxis and mitogen-activated protein kinase activation by the membrane tyrosine phosphatase, CD45. J Bio Chem278: 9536–9543.
  6. García-Lestón J, Roma-Torres J, Mayan O, Schroecksnadel S, Fuchs D, Moreira AO. (2012). Assessment of immunotoxicity parameters in individuals occupationally exposed to lead. J Toxico l Environ Health A 75: 807–818.
  7. Gardner OS, Shiau CW, Chen CS, Graves LM. (2005). Peroxisome proliferator-activated receptor gamma-independent activation of p38 MAPK by thiazolidinediones involves calcium/calmodulin-dependent protein kinase II and protein kinase R: correlation with endoplasmic reticulum stress. J Bio Chem280: 10109–1011.
  8. Hossain MA, Bouton CM, Pevsner J, Laterra J. (2000). Induction of vascular endothelial growth factor in human astrocytes by lead. Involvement of a protein kinase C/activator protein-1 complex-dependent and hypoxiainducible factor 1-independent signaling pathway. J Biolog Chem275: 27874–27882.
  9. Katsumoto K, Kume S. (2011). Endoderm and mesoderm reciprocal signaling mediated by CXCL12 and CXCR4 regulates the migration of angioblasts and establishes the pancreatic fate. Development138: 1947–1955.
  10. Kern M, Wisniewski M, Cabell L, Audesirk G. (2000). Inorganic lead and calcium interact positively in activation of calmodulin. Neurotoxicology21: 353–363.
  11. Kirberger M, Wong HC, Jiang J, Yang JJ. (2013). Metal toxicity and opportunistic binding of Pb(2+) in proteins. J Inorg Biochem125: 40–49.
  12. Mainiero F, Colombara M, Antonini V, Strippoli R, Merola M, Poffe O. (2003). p38 MAPK is a critical regulator of the constitutive and the beta 4 integrin-regulated expression of IL-6 in human normal thymic epithelial cells. Eur J Immunol33: 3038–3048.
  13. Mishra KP, Singh VK, Rani R, Yadav VS, Chandran V, Srivastava SP. (2003). Effect of lead exposure on the immune response of some occupationally exposed individuals. Toxicology188: 251–259.
  14. Racioppi L, Means AR. (2012). Calcium/calmodulin-dependent protein kinase 2: roles in signaling and pathophysiology. J Bio Chem287: 31658–31665.
  15. Simons T. (1986). Cellular interactions between lead and calcium. Br Med Bulletin42: 431–434.
  16. Sun L, Zhao ZY, Hu J, Zhou XL. (2005). Potential association of lead exposure during early development of mice with alteration of hippocampus nitric oxide levels and learning memory. Biomed Environ Sci6: 375–378.
  17. Sun L, Zhao ZY, Liang GQ, Jian SJ, Yuan H. (2012). Effects of lead on calmodulin content, proliferation and interleukin-2 in lymphocytes of mice. Toxicol Environ Chem94: 958–964.
  18. Taylor MP, Winder C, Lanphear BP. (2014). Australia’s leading public health body delays action on the revision of the public health goal for blood lead exposures. Environ Int70C: 113–117.
  19. Toscano CD, O’Callaghan JP, Guilarte TR. (2005). Calcium/calmodulin-dependent protein kinase II activity and expression are altered in the hippocampus of Pb-exposed rats. Brain Res1044: 51–58.
  20. Wang W, Duan B, Xu H, Xu L, Xu TL. (2006). Calcium-permeable acid-sensing ion channel is a molecular target of the neurotoxic metal ion lead. J Bio Chem281: 2497–2505.
  21. Zhu ZW, Yang RL, Dong GJ, Zhao ZY. (2005). Study on the neurotoxic effects of low-level lead exposure in rats. J Zhejiang Univ Sci B7: 686–692.
DOI: https://doi.org/10.1515/intox-2015-0024 | Journal eISSN: 1337-9569 | Journal ISSN: 1337-6853
Language: English
Page range: 155 - 158
Submitted on: Apr 28, 2015
Accepted on: Nov 17, 2015
Published on: Mar 7, 2016
Published by: Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Sun Li, Xiao-Lin Liu, Xie-Lai Zhou, Su-Jun Jiang, Hong Yuan, published by Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.