Related Experiment Video
Updated: Jun 29, 2025

High-resolution Time-lapse Imaging and Automated Analysis of Microtubule Dynamics in Living Human Umbilical Vein Endothelial Cells
Published on: August 13, 2016
Map-1a regulates Sertoli cell BTB dynamics through the cytoskeletal organization of microtubule and F-actin
Lingling Wang1, Ming Yan2, Tiao Bu1
1Institute of Reproductive Medicine, Medical School of Nantong University, Nantong, 226001, Jiangsu, China.
Abstract:
Microtubule-associated protein 1a (Map1a) is a microtubule (MT) regulatory protein that binds to the MT protofilaments in mammalian cells to promote MT stabilization. Maps work with MT cleavage proteins and other MT catastrophe-inducing proteins to confer MT dynamics to support changes in the Sertoli cell shape to sustain spermatogenesis. However, no functional studies are found in the literature to probe its role in spermatogenesis. Using an RNAi approach, coupled with the use of toxicant-induced testis (in vivo)- and Sertoli cell (in vitro)-injury models, RNA-Seq analysis, transcriptome profiling, and relevant bioinformatics analysis, immunofluorescence analysis, and pertinent biochemical assays for cytoskeletal organization, we have delineated the functional role of Map1a in Sertoli cells and testes. Map1a was shown to support MT structural organization, and its knockdown (KD) also perturbed the structural organization of actin, vimentin, and septin cytoskeletons as these cytoskeletons are intimately related, working in concert to support spermatogenesis. More importantly, cadmium-induced Sertoli cell injury that perturbed the MT structural organization across the cell cytoplasm was associated with disruptive changes in the distribution of Map1a and a surge in p-p38-MAPK (phosphorylated p38-mitogen-activated protein kinase) expression but not total p38-MAPK. These findings thus support the notion that p-p38-MAPK activation is involved in cadmium-induced Sertoli cell injury. This conclusion was supported by studies using doramapimod, a specific p38-MAPK phosphorylation (activation) inhibitor, which was capable of restoring the cadmium-induced disruptive structural organization of MTs across the Sertoli cell cytoplasm. In summary: this study provides mechanistic insights regarding restoration of toxicant-induced Sertoli cell and testis injury and male infertility.
Insights
Microtubule-associated protein 1a (Map1a) stabilizes microtubules, crucial for Sertoli cell shape and spermatogenesis. Its disruption by cadmium leads to male infertility, but p38-MAPK inhibition can restore function.
Area of Science:
- Cell Biology
- Reproductive Biology
- Biochemistry
Background:
- Microtubule-associated protein 1a (Map1a) regulates microtubule stability, essential for Sertoli cell dynamics during spermatogenesis.
- Limited functional studies exist on Map1a's role in male fertility and response to toxicants.
Purpose of the Study:
- To elucidate the functional role of Map1a in Sertoli cells and testes.
- To investigate Map1a's involvement in toxicant-induced male reproductive injury and potential therapeutic interventions.
Main Methods:
- RNA interference (RNAi) for Map1a knockdown.
- In vivo and in vitro toxicant-induced injury models (cadmium).
- RNA-Seq, transcriptome profiling, bioinformatics, immunofluorescence, and biochemical assays for cytoskeletal organization.
- Pharmacological inhibition of p38-MAPK.
Main Results:
- Map1a knockdown disrupted microtubule organization and affected actin, vimentin, and septin cytoskeletons.
- Cadmium-induced injury altered Map1a distribution and increased phosphorylated p38-MAPK (p-p38-MAPK).
- Inhibition of p-p38-MAPK restored microtubule organization in cadmium-injured Sertoli cells.
Conclusions:
- Map1a is vital for cytoskeletal integrity supporting spermatogenesis.
- p-p38-MAPK activation mediates cadmium-induced Sertoli cell injury.
- Targeting p38-MAPK offers a potential strategy to restore male fertility after toxicant exposure.
Related Concept Videos
Microtubule Associated Proteins (MAPs)
Assembly of Complex Microtubule Structures
Cytoskeletal Coordination in Cell Migration
Microtubule Instability
Microtubule Formation
Destabilization of Microtubules

