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The cytoskeleton is composed of microtubules, microfilaments, and intermediate filaments in cells. While the functions of microtubules and microfilaments have been well elucidated, the roles of intermediate filaments and associated proteins remain largely unknown, especially in meiosis. BFSP1 is an intermediate filament protein mainly expressed in the eye lens to play important roles in the development of congenital cataract. Here, we document that BFSP1 functions as a spindle regulator to drive the oocyte asymmetric division. Specifically, we found that BFSP1 distributed on the spindle apparatus during oocyte meiotic maturation. Depletion of BFSP1 resulted in symmetric division of oocytes, accompanied by the formation of elongated spindles at metaphase I and anaphase/telophase I stages. In addition, immunoprecipitation combined with mass spectrometry analysis identified MAP1B, a microtubule-associated protein, as an interacting partner of BFSP1. Depletion or mutation of MAP1B phenocopied the meiotic defects observed in BFSP1-depleted oocytes, and expression of exogenous MAP1B-EGFP in BFSP1-depleted oocytes recovered the spindle length and asymmetric division. We further determined that BFSP1 recruited molecular chaperone HSP90α on the spindle to stabilize MAP1B, thereby controlling the spindle length. To sum up, our findings reveal a unique meiotic role for BFSP1 in the regulation of spindle dynamics and oocyte asymmetric division.
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http://dx.doi.org/10.1002/advs.202504066 | DOI Listing |
Adv Mater
September 2025
Center for Renewable Energy and Storage Technologies (CREST), King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
The orientation of MXene flakes has received increasing research attention as it plays a critical role in determining the performance of MXene-based assemblies. Engineering MXene flakes into horizontal or vertical orientations can offer distinct advantages such as higher electrical conductivity, higher mechanical strength, and more efficient ion/molecule transport across the flakes. However, the benefits of horizontal and vertical orientations are mutually exclusive, and both of them possess structural symmetry that restricts their ability for stimuli-responsive deformation.
View Article and Find Full Text PDFJ Craniofac Surg
September 2025
Department of Neurological Sciences, Division of Maxillofacial Surgery, Marche University Hospital, Ancona.
Orthognathic surgery has undergone considerable evolution, marked by increasing prevalence and improved patient experience. Key advancements include shifting aesthetic ideals, the integration of digital technologies for surgical planning, and a growing emphasis on minimally invasive techniques. This study aimed to promote single-maxillary orthognathic surgery by implementing a novel, fully digital workflow protocol to reduce invasiveness.
View Article and Find Full Text PDFCell Death Differ
September 2025
Institute of Molecular and Cellular Biology, National Taiwan University, Taipei, Taiwan.
Nucleotide metabolism is essential for fundamental cellular functions such as growth, repair and proliferation. Emerging evidence suggests that metabolic pathways also influence programmed cell death (PCD), though the underlying mechanisms remain poorly understood. One model organism that has provided key insights into the regulation of PCD is Caenorhabditis elegans (C.
View Article and Find Full Text PDFMol Cell Endocrinol
September 2025
Reproductive Medicine Center, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Nanjing, China.
RNA-binding proteins (RBPs) are critical regulators of post-transcriptional gene expression and RNA processing during mammalian oocyte development. SERPINE1 mRNA-binding protein 1 (SERBP1), a conserved RNA-binding protein (RBP), exhibits prominent expression in the female reproductive system and throughout oogenesis. Conditional deletion of Serbp1 using oocyte-specific Zp3/Gdf9-Cre drivers resulted in arrested oocyte growth, female infertility, and failure of blastocyst formation from two-cell embryos.
View Article and Find Full Text PDFNat Phys
April 2025
Whitman Center, Marine Biological Laboratory, Woods Hole, USA.
Evolution of multicellularity from early unicellular ancestors is one of the most important transitions since the origin of life. Multicellularity is associated with enhanced nutrient uptake, better defense against predation, cell specialization and division of labor. While many single-celled organisms exhibit both solitary and colonial forms, the organizing principles governing the transition and the benefits endowed by the colonial states are less clear.
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