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#cell morphology

3 public questions tagged with this topic.

HeLa cells show which morphology?

HeLa displays epithelial-like morphology reflecting origin from cervical keratinocytes. In vitro, HeLa forms adherent monolayer of polygonal cells with cobblestone pattern, distinct cell borders, prominent nucleoli, and high nuclear to cytoplasmic ratio typical of carcinoma. Cells lack extensive spindle architecture seen in fibroblast-like populations such as NIH-3T3 which grow elongated and align in parallel arrays. HeLa retains some epithelial characteristics including expression of cytokeratins, presence of microvilli on apical surface, and formation of weak tight junctions but fails to develop high transepithelial resistance. Unlike suspension lines such as Jurkat that float as single round cells, HeLa requires substrate attachment for survival and spreads via integrin mediated adhesion. Ease of culture, rapid doubling, and efficient transfection make HeLa model for cell division imaging, membrane trafficking, and virus infection studies. However lack of true barrier formation makes MDCK or Caco-2 preferable for permeability assays requiring polarized monolayers. Genetic engineering using CRISPR-Cas9 in HeLa enables rapid functional studies despite atypical karyotype. This knowledge strengthens laboratory safety, protocol reproducibility, and regulatory compliance critical for translational research and clinical applications, ensuring reliable data and workforce protection.

Ref: ATCC CCL-2 HeLa morphology epithelial-like; Freshney Ch.16 Epithelial vs fibroblast morphology characteristics.

Which cytoskeletal protein is responsible for maintaining rod shape in bacteria?

Cell shape maintenance in prokaryotes relies on cytoskeletal elements directing wall synthesis. Rod shape requires lateral peptidoglycan insertion along sidewall producing cylinder with hemispherical poles. MreB is bacterial actin homolog sharing actin fold ATP binding pocket polymerizes into short double filaments moving circumferentially around cell coordinated with cell wall synthesis enzymes. MreB associates with MreC MreD transmembrane proteins and RodZ linking to RodA SEDS transglycosylase and PBP2 transpeptidase elongasome complex synthesizing hoop like glycans inserting along length. Depolymerization by drug A22 binding ATP pocket converts rods to spheres demonstrating essentiality, shape defect sensitizes to cell wall antibiotics. FtsZ builds division septum, ParA mediates chromosome plasmid segregation via Walker ATPase, TubZ is tubulin homolog involved in plasmid pBToxis partitioning pushing plasmids. Therefore maintaining rod shape assigned to MreB actin like cytoskeleton, illustrating conservation of actin function in morphogenesis across domains and target for shape altering antibiotics exploring novel antibacterial mechanisms targeting MreB dynamics and Rod complex.

Ref: Cabeen & Jacobs-Wagner, Annu Rev Genetics, 2010, Bacterial cytoskeleton: MreB maintains rod shape.