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Kissil, J.

Publications and source records attributed to Kissil, J..

2 recordsLinked to original sources

The L27 Domain of MPP7 enhances TAZ-YY1 Cooperation to Renew Muscle Stem Cells

Stem cells regenerate differentiated cells to maintain and repair tissues and organs. They also replenish themselves, i.e. self-renewal, for the regenerative process to last a lifetime. How stem cells renew is of critical biological and medical significance. Here we use the skeletal muscle stem cell (MuSC) to study this process. Using a combination of genetic, molecular, and biochemical approaches, we show that MPP7, AMOT, and TAZ/YAP form a complex that activates a common set of target genes. Among these targets, Carm1 can direct MuSC renewal. In the absence of MPP7, TAZ can support regenerative progenitors and activate Carm1 expression, but not to a level needed for self-renewal. Facilitated by the actin polymerization-responsive AMOT, TAZ recruits the L27 domain of MPP7 to up-regulate Carm1 to the level necessary to drive MuSC renewal. The promoter of Carm1, and those of other common downstream genes, also contain binding site(s) for YY1. We further demonstrate that the L27 domain of MPP7 enhances the interaction between TAZ and YY1 to activate Carm1. Our results define a renewal transcriptional program embedded within the progenitor program, by selectively up-regulating key gene(s) within the latter, through the combination of protein interactions and in a manner dependent on the promoter context.

developmental biology↗

An autochthonous model of lung cancer in the Naked Mole-Rat (Heterocephalus glaber)

Studies on cancer resistance in the naked mole-rat (NMR) have generally failed to interrogate possible resistance mechanisms in a physiological context. Here, we provide evidence that the NMR presents as a novel model of tumor initiation. We developed an endogenous lung cancer model in NMRs, driven by an oncogenic Eml4-Alk fusion protein introduced through CRISPR- mediated genome editing. While this is sufficient to drive tumorigenesis in mice, the development of progressive disease in NMRs required the additional loss of key tumor suppressors. Our results show that tumor initiation in NMRs more closely recapitulates that of human tumors. This suggests that the proposed "resistance" of NMRs to cancer development may stem from tumor initiation events that are likely to be comparable to the mechanisms in human cells. One-Sentence SummaryTumor development in the cancer-resistant naked mole-rat more accurately represents the tumor initiation process in humans.

cancer biology↗