| Literature DB >> 24629138 |
Ai-Jie Xin1,2, Li Cheng3,4,5, Hua Diao6, Peng Wang6, Yi-Hua Gu6, Bin Wu6, Yan-Cheng Wu2, Guo-Wu Chen1, Shu-Min Zhou3,4, Shu-Juan Guo3,4,5, Hui-Juan Shi6, Sheng-Ce Tao3,4,5.
Abstract
It is well known that cell surface glycans or glycocalyx play important roles in sperm motility, maturation and fertilization. A comprehensive profile of the sperm surface glycans will greatly facilitate both basic research (sperm glycobiology) and clinical studies, such as diagnostics of infertility. As a group of natural glycan binders, lectin is an ideal tool for cell surface glycan profiling. However, because of the lack of effective technology, only a few lectins have been tested for lectin-sperm binding profiles. To address this challenge, we have developed a procedure for high-throughput probing of mammalian sperm with 91 lectins on lectin microarrays. Normal sperm from human, boar, bull, goat and rabbit were collected and analyzed on the lectin microarrays. Positive bindings of a set of ~50 lectins were observed for all the sperm of 5 species, which indicated a wide range of glycans are on the surface of mammalian sperm. Species specific lectin bindings were also observed. Clustering analysis revealed that the distances of the five species according to the lectin binding profiles are consistent with that of the genome sequence based phylogenetic tree except for rabbit. The procedure that we established in this study could be generally applicable for sperm from other species or defect sperm from the same species. We believe the lectin binding profiles of the mammalian sperm that we established in this study are valuable for both basic research and clinical studies.Entities:
Year: 2014 PMID: 24629138 PMCID: PMC4003823 DOI: 10.1186/1559-0275-11-10
Source DB: PubMed Journal: Clin Proteomics ISSN: 1542-6416 Impact factor: 3.988
Figure 1The schematic and workflow of profiling sperm surface glycans on lectin microarray. (A). The procedure of analysis sperm on lectin microarray is similar to that of other cells except a fixation step before label the sperm with a fluorescent dye. A typical workflow is composed of five steps, i.e., fixation, labeling, incubation, washing and the final readout. (B). The layout the lectin microarray with 91 lectins, each lectin was repeated for three spots on one block.
Figure 2The results of analyzed sperm of five mammalian species on the lectin microarray. For all the five species that have been analyzed, representative images were shown on the left. Quantitative results were also shown on the right. For a given lectin, the error bar was the standard deviation of 12 duplicated lectin spots from two repeated microarray experiments.
Figure 3The clustering of the five species according to the lectin-sperm binding profiles is consistent to the phylogenetic tree. (A). The clustered heatmap of the lectin-sperm binding profiles of the five species generated by using the lectins which showed positive bindings (S/B ≥ 2). (B). The phylogenetic tree of the five species (red labeled) modified from Kriegs JO et al. [39] and Murphy WJ et al. [40].