Association of Palm gene mutations with structure and function of paralemmin proteins in Lori-Bakhtiari and Zel sheep Breeds

  • Masoomeh Zare University of Tehran
  • Mostafa Sadeghi University of Tehran
  • Javad Ahmadpanah Agriculture Research, Education and Extension Organization
  • Abbas Safari University of Guilan
  • Misagh Moridi University of Guilan
Palavras-chave: Paralemmin; polymorphism; protein structure; fat and thin tail breed.

Resumo

The aim of current study was to survey genetic variability of PALM gene’s exon 3 and 4 by PCR-SSCP and DNA sequencing in Zel and Lori Bakhtiari sheep breeds. The SIFT (Sorting Intolerant from Tolerant) and PHyre2 program were used to predict the possible impact of amino acid substitutions on performance and structure of the paralemmin protein. A total of 140 animal's from 2 Iranian sheep breeds with different fat metabolisms, Lori-Bakhtiari and Zel sheep breeds were considered. The results showed that there are two polymorphic sites including a nonsynonymous substitution and an insertion mutation (49bp). Non-synonymous mutation deduced Thr20Ala amino acid exchange and ensuing two different structures for paralemmin protein that could be potentially affect protein structure and function during the interaction with glutamate in the cytosolic surface of plasma membrane. PALM gene, according to evolutionary path, is classified into two separate categories. In first covey, Gallus gallus and in second one, other species in several branches, so that the sequence of cow and sheep is placed in a sub-branch which forms a clade beside goat. Comparison of illustrated coding region sequences, PALM gene among different species, is of orthologous which are derived from a common ancestor.

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Referências

Albert, T. J., Molla, M. N., Muzny, D., Nazareth, L., Wheeler, D., Song, … Gibbs, R. A. (2007). Direct selection of human genomic loci by microarray hybridization. National Methods, 4(11), 903-905. DOI: https://doi.org/10.1038/nmeth1111

Bagchi, M., Katar, M., Lo, W. K., & Maisel, H. (2003). Paralemnin of the lens. Journal of Cell Biochemistry, 89(5), 917-921. DOI: https://doi.org/10.1002/jcb.10574

Bassam, B. J., Caetano-Anollés, G., & Gresshoff, P. M. (1991). Fast and sensitive silver staining of DNA in polyacrylamide gels. Analytical Biochemistry, 196(1), 80-83.

Biasini, M., Bienert, S., Waterhouse, A., Arnold, K., Studer, G., Schmidt, T., … Schwede, T. (2014). SWISS-MODEL: modelling protein tertiary and quaternary structure using evolutionary information. Nucleic Acids Research, 42, 252-258. DOI: https://doi.org/10.1093/nar/gku340

Castellini, M., Wolf, V., Chauhan, B. K., Galileo, D. S., Kilimann, M. W., Cvekl, A., & Duncan, M. K. (2005). Palm is expressed in both developing and adult mouse lens and retina. BMC Ophthalmology, 5(14), 14-23. DOI: https://doi.org/10.1186/1471-2415-5-14

Chasman, D., & Adams, R. M. (2001). Predicting the functional consequences of non-synonymous single nucleotide polymorphisms: structure-based assessment of amino acid variation. Journal of Molecular Biology, 307(2), 683-706. DOI: https://doi.org/10.1006/jmbi.2001.4510

Chauhan, B. K., Reed, N. A., Zhang, W., Duncan, M. K., Kilimann, M. W., & Cvekl, A. (2002). Identification of genes downstream of Pax6in the mouse lens using cDNA microarrays. Journal of Cellular Biochemistry, 277(13), 11539-11548. DOI: https://doi.org/10.1074/jbc.M110531200

Edwin, K. S., Wong, T., Goodship, H. J., & Kavanagh, D. (2013). Complement therapy in atypical haemolyticuraemic syndrome (aHUS). Molecular Immunology, 56(3), 199-212. DOI: https://doi.org/10.1016/j.molimm.2013.05.224

Hindorff, L. A., Sethupathy, P., Junkins, H. A., Ramos, E. M., Mehta, J. P., Collins, F. S., & Manolio, T. A. (2009). Potential etiologic and functional implications of genome-wide association loci for human diseases and traits. Proceeding of the National Academy of Sciences of the United States of America, 106(23), 9362-9367. DOI: https://doi.org/10.1073/pnas.0903103106

Burge, C., & Karlin, S. (1997) Prediction of complete gene structures in human genomic DNA. Journal of Molecular Biology, 268(1), 78-94.

Hu, B., Copeland, N. G., Gilbert, D. J., Jenkins, N. A., & Kilimann, M. W. (2001). The paralemmin protein family: identification of paralemmin-2, an isoform differentially spliced to AKAP2/AKAP-KL, and of palmdelphin, a more distant cytosolic relative. Biochemical and Biophysical Research Communications, 285(5), 1369-1376.

Hu, B., Petrasch-Parwez, E., Laue, M., & Kilimann, M. (2005). Molecular characterization and immunohistochemical localization of palmdelphin, a cytosolic isoform of the protein family implicated in membrane dynamics. European Journal of Cell Biology, 84(11), 853-866. DOI: https://doi.org/10.1016/j.ejcb.2005.07.002

Khaldari, M., Azarfara, A., & Pahlavan, R. (2020). The size of fat tail does not have an effect on growth performance and carcass characteristics in Lori-Bakhtiari lambs. Small Ruminant Research, 187(1), 106088.

Kutzleb, C., Sanders, G., Yamamoto, R., Wang, X., Lichte, B., Petrasch-Parwez, P., & Kilimann, M. W. (1998). Paralemmin, a prenyl-palmitoyl-anchored phosphoprotein abundant in neurons and implicated in plasma membrane dynamics and cell process formation. Journal of Cell Biology, 143(3), 795-813. DOI: https://doi.org/10.1083/jcb.143.3.795

Moradi, M. H., Nejatip-Javaremi, A., Moradi-Shahrbabak, M., Dodds, K. G., & Mc Ewan, J. C. (2012). Genomic scan of selective sweeps in thin and fat tail sheep dreeds for identifying of candidate regions associated with fat deposition. BMC Genetics, 13(10), 1-15. DOI: https://doi.org/10.1186/1471-2156-13-10

Statistical Analysis Software [SAS]. (2007). SAS/STAT User guide, Version 9. Cary, NC: SAS Institute Inc.

Tamura, K., Nei, M., & Kumar, S. (2007). MEGA4: molecular evolutionary genetics analysis (MEGA) software version 4.0. Molecular Biology and Evolution, 24(8), 1596-1599. DOI: https://doi.org/10.1093/molbev/msm09

Publicado
2022-09-13
Como Citar
Zare, M., Sadeghi, M., Ahmadpanah, J., Safari, A., & Moridi, M. (2022). Association of Palm gene mutations with structure and function of paralemmin proteins in Lori-Bakhtiari and Zel sheep Breeds . Acta Scientiarum. Animal Sciences, 45(1), e57287. https://doi.org/10.4025/actascianimsci.v44i1.57287
Seção
Produção Animal

0.9
2019CiteScore
 
 
29th percentile
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