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Identification of Novel Kirrel3 Gene Splice Variants in Adult Human Skeletal Muscle

Overview
Journal BMC Physiol
Publisher Biomed Central
Specialty Physiology
Date 2014 Dec 10
PMID 25488023
Citations 2
Authors
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Abstract

Background: Multiple cell types including trophoblasts, osteoclasts and myoblasts require somatic cell fusion events as part of their physiological functions. In Drosophila Melanogaster the paralogus type 1 transmembrane receptors and members of the immunoglobulin superfamily Kin of Irre (Kirre) and roughest (Rst) regulate myoblast fusion during embryonic development. Present within the human genome are three homologs to Kirre termed Kin of Irre like (Kirrel) 1, 2 and 3. Currently it is unknown if Kirrel3 is expressed in adult human skeletal muscle.

Results: We investigated (using PCR and Western blot) Kirrel3 in adult human skeletal muscle samples taken at rest and after mild exercise induced muscle damage. Kirrel3 mRNA expression was verified by sequencing and protein presence via blotting with 2 different anti-Kirrel3 protein antibodies. Evidence for three alternatively spliced Kirrel3 mRNA transcripts in adult human skeletal muscle was obtained. Kirrel3 mRNA in adult human skeletal muscle was detected at low or moderate levels, or not at all. This sporadic expression suggests that Kirrel3 is expressed in a pulsatile manner. Several anti Kirrel3 immunoreactive proteins were detected in all adult human skeletal muscle samples analysed and results suggest the presence of different isoforms or posttranslational modification, or both.

Conclusion: The results presented here demonstrate for the first time that there are at least 3 splice variants of Kirrel3 expressed in adult human skeletal muscle, two of which have never previously been identified in human muscle. Importantly, mRNA of all splice variants was not always present, a finding with potential physiological relevance. These initial discoveries highlight the need for more molecular and functional studies to understand the role of Kirrel3 in human skeletal muscle.

Citing Articles

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Traenkner D, Shennib O, Johnson A, Weinbrom A, Taylor M, Williams M eNeuro. 2023; 10(12).

PMID: 37977826 PMC: 10698715. DOI: 10.1523/ENEURO.0253-23.2023.


Identification and Characterization of lncRNAs Related to the Muscle Growth and Development of Japanese Flounder ().

Wu S, Zhang J, Liu B, Huang Y, Li S, Wen H Front Genet. 2020; 11:1034.

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References
1.
Volker L, Petry M, Abdelsabour-Khalaf M, Schweizer H, Yusuf F, Busch T . Comparative analysis of Neph gene expression in mouse and chicken development. Histochem Cell Biol. 2011; 137(3):355-66. PMC: 3278613. DOI: 10.1007/s00418-011-0903-2. View

2.
Shen K, Bargmann C . The immunoglobulin superfamily protein SYG-1 determines the location of specific synapses in C. elegans. Cell. 2003; 112(5):619-30. DOI: 10.1016/s0092-8674(03)00113-2. View

3.
Horsley V, Pavlath G . Forming a multinucleated cell: molecules that regulate myoblast fusion. Cells Tissues Organs. 2004; 176(1-3):67-78. DOI: 10.1159/000075028. View

4.
Carter A . Cell fusion theory: can it explain what triggers metastasis?. J Natl Cancer Inst. 2008; 100(18):1279-81. DOI: 10.1093/jnci/djn336. View

5.
Tamura S, Morikawa Y, Hisaoka T, Ueno H, Kitamura T, Senba E . Expression of mKirre, a mammalian homolog of Drosophila kirre, in the developing and adult mouse brain. Neuroscience. 2005; 133(3):615-24. DOI: 10.1016/j.neuroscience.2005.03.030. View