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Chann, A. S.

Publications and source records attributed to Chann, A. S..

2 recordsLinked to original sources

Stepwise progression of β-selection during T cell development as revealed by histone deacetylation inhibition

During T cell development, the first step in creating a unique T Cell Receptor (TCR) is the genetic recombination of the TCR{beta} chain. The quality of the newly recombined TCR{beta} is assessed at the {beta}-selection checkpoint. Most cells fail this checkpoint and die, but the coordination of the complex events that control fate at the {beta}-selection checkpoint is not yet understood. We shed new light on fate determination during {beta}-selection using a selective inhibitor of histone deacetylase 6, ACY1215. ACY1215 disrupted the {beta}-selection checkpoint. Characterising the basis for this disruption revealed a new, pivotal stage in {beta}-selection, bookended by upregulation of the TCR co-receptors, CD28 and CD2 respectively. Within this DN3bPre stage, CD5 and Lef1 are upregulated to reflect pre-TCR signalling and their expression correlates with proliferation. During this phase, ACY1215-mediated disruption of the organisation of the {beta}-selection immunological synapse is associated with a breakdown in connectivity of expression of pre-TCR, CD5 and Lef1. Subsequent deregulation of pre-TCR-induced proliferation leads to bypass of the {beta}-selection checkpoint and subsequent failure to progress. We propose that the progressive expression of CD28, CD5 and Lef1, then CD2 reports and modulates the pre-TCR signal to orchestrate passage through the {beta}-selection checkpoint. These findings suggest a refined model of {beta}-selection in which a coordinated increase in expression of pre-TCR, CD28, CD5 and Lef1 allows for modulating TCR signalling strength, and culminates in the expression of CD2 to enable exit from the {beta}-selection checkpoint.

developmental biology

A Scribble-E-cadherin complex controls daughter cell patterning by multiple mechanisms

The fate of the two daughter cells is intimately connected to their positioning, which is in turn regulated by cell junction remodelling and orientation of the mitotic spindle. How multiple cues are integrated to dictate the ultimate patterning of daughters is not clear. Here, we identify novel mechanisms of regulation of daughter positioning in single MCF10A cells. The polarity protein, Scribble, links E-cadherin to NuMA and Arp2/3 signalling for sequential roles in daughter positioning. First Scribble transmits cues from E-cadherin localised in retraction fibres to control orientation of the mitotic spindle. Second, Scribble re-locates to the junction between the two daughters to allow a new E-cadherin-based-interface to form between them, influencing the width of the nascent daughter-daughter junction, generation of filopodia and subsequent cell patterning. Thus, E-cadherin and Scribble dynamically relocate to different intracellular sites during cell division to orient the mitotic spindle and control placement of the daughter cells after cell division.

cell biology