Search bioRxiv⌕ Search

Biology subjects

Manikas, J.

Publications and source records attributed to Manikas, J..

2 recordsLinked to original sources

Rab8-, Rab11-, and Rab35-dependent mechanisms coordinating lumen and cilia formation during Left-Right Organizer development

An essential process during Danio rerios left-right organizer (Kupffers Vesicle, KV) development is for the majority of developing KV cells to form a motile cilium that extend into the KV lumen. Left-right beating of motile cilia within the KV lumen directs fluid flow to establishment the embryos left-right axis. However, when KV cells start to form cilia and how cilia formation is coordinated with KV lumen formation has not been examined. We identified that nascent KV cells form cilia at their centrosomes at random intracellular positions that then move towards a forming apical membrane containing cystic fibrosis transmembrane conductance regulator (CFTR). Using optogenetic clustering approaches, we found that Rab35 positive membranes recruit Rab11 to modulate CFTR delivery to the apical membrane, which is required for lumen opening, and subsequent cilia extension into the lumenal cavity. Once the intracellular cilia reach the CFTR positive apical membrane, Arl13b-positive cilia extend and elongate in a Rab8 dependent manner into the forming lumen once the lumen reaches an area of 300 m2. These studies demonstrate the need to acutely coordinate Rab8, Rab11, and Rab35-mediated membrane trafficking events to ensure appropriate timing in lumen and cilia formation during KV development.

cell biology↗

KaryoCreate: a new CRISPR-based technology to generate chromosome-specific aneuploidy by targeting human centromeres

Aneuploidy, the presence of chromosome gains or losses, is a hallmark of cancer and congenital syndromes. Here, we describe KaryoCreate (Karyotype CRISPR Engineered Aneuploidy Technology), a system that enables generation of chromosome-specific aneuploidies by co-expression of a sgRNA targeting chromosome-specific CENPA-binding [a]-satellite repeats together with dCas9 fused to a mutant form of KNL1. We designed unique and highly specific sgRNAs for 19 out of 24 chromosomes. Expression of these sgRNAs with KNL1Mut-dCas9 leads to missegregation and induction of gains or losses of the targeted chromosome in cellular progeny with an average efficiency of 8% and 12% for gains and losses, respectively (up to 20%), tested and validated across 9 chromosomes. Using KaryoCreate in colon epithelial cells, we show that chromosome 18q loss, a frequent occurrence in gastrointestinal cancers, promotes resistance to TGF{beta}, likely due to synergistic hemizygous deletion of multiple genes. Altogether, we describe a novel technology to create and study chromosome missegregation and aneuploidy in the context of cancer and beyond. HighlightsO_LIWe designed sgRNAs targeting chromosome-specific centromeres across 19 human chromosomes C_LIO_LIKaryoCreate combines chromosome-specific centromeric sgRNAs with dCas9 fused to a mutant form of KNL1. C_LIO_LIKaryoCreate allows engineering gains and losses of specific human chromosomes. C_LIO_LIEngineered Chromosome 18q loss promotes tumor-associated phenotypes in colon-derived cells. C_LIO_LIKaryoCreate is a CRISPR-based technology to foster the study of centromere biology and aneuploidy. C_LI

cell biology↗