Autophagic homeostasis is required for the pluripotency of cancer stem cells
AUTOPHAGY
Authors: Sharif, Tanveer; Martell, Emma; Dai, Cathleen; Kennedy, Barry E.; Murphy, Patrick; Clements, Derek R.; Kim, Youra; Lee, Patrick W. K.; Gujar, Shashi A.
Abstract
Pluripotency is an important feature of cancer stem cells (CSCs) that contributes to self-renewal and chemoresistance. The maintenance of pluripotency of CSCs under various pathophysiological conditions requires a complex interaction between various cellular pathways including those involved in homeostasis and energy metabolism. However, the exact mechanisms that maintain the CSC pluripotency remain poorly understood. In this report, using both human and murine models of CSCs, we demonstrate that basal levels of autophagy are required to maintain the pluripotency of CSCs, and that this process is differentially regulated by the rate-limiting enzyme in the NAD(+) synthesis pathway NAMPT (nicotinamide phosphoribosyltransferase) and the transcription factor POU5F1/OCT4 (POU class 5 homeobox 1). First, our data show that the pharmacological inhibition and knockdown (K-D) of NAMPT or the K-D of POU5F1 in human CSCs significantly decreased the expression of pluripotency markers POU5F1, NANOG (Nanog homeobox) and SOX2 (SRY-box 2),and upregulated the differentiation markers TUBB3 (tubulin 3 class III), CSN2 (casein ), SPP1 (secreted phosphoprotein 1), GATA6 (GATA binding protein 6), T (T brachyury transcription factor) and CDX2 (caudal type homeobox 2). Interestingly, these pluripotency-regulating effects of NAMPT and POU5F1 were accompanied by contrasting levels of autophagy, wherein NAMPT K-D promoted while POU5F1 K-D inhibited the autophagy machinery. Most importantly, any deviation from the basal level of autophagy, either increase (via rapamycin, serum starvation or Tat-beclin 1 [Tat-BECN1] peptide) or decrease (via ATG7 or ATG12 K-D), strongly decreased the pluripotency and promoted the differentiation and/or senescence of CSCs. Collectively, these results uncover the link between the NAD(+) biosynthesis pathway, CSC transcription factor POU5F1 and pluripotency, and further identify autophagy as a novel regulator of pluripotency of CSCs.
Autosomal dominant TUBB3-related syndrome: Fetal, radiologic, clinical and morphological features
EUROPEAN JOURNAL OF PAEDIATRIC NEUROLOGY
Authors: Blumkin, Lubov; Leibovitz, Zvi; Krajden-Haratz, Karina; Arad, Ayala; Yosovich, Keren; Gindes, Liat; Zerem, Ayelet; Ben-Sira, Liat; Lev, Dorit; Nissenkorn, Andrea; Kidron, Dvora; Dobyns, William B.; Malinger, Gustavo; Bahi-Buisson, Nadia; Leventer, Richard J.; Lerman-Sagie, Tally
Abstract
Objective: To describe fetal, clinical, radiological, morphological features of TUBB3 related syndrome. Methods: We report two families each of two generations harboring a novel and a previously described heterozygous TUBB3 pathogenic variants. We compared these patients with other published TUBB3-related cases. We describe the pathological features of dysgyria in the two aborted fetuses. Results: The mother and son from family 1 had a history of mild developmental delay in motor and language skills and demonstrated mild cerebellar signs and mirror movements. Neuroimaging findings included: hypoplastic corpus callosum (CC), asymmetric ventriculomegaly and cerebellar vermis hypoplasia in all patients and frontal dysgyria in three. Autopsy of the fetal brain showed an unusual shape and orientation of the frontal sulci and gyri with normal cortical layering and no abnormal cell types. The mother of family 2 had congenital strabismus, mild muscle weakness on the right and a past history of developmental delay. Fetal brain MRI showed abnormal cerebral sulcation, hemispheric asymmetry, asymmetric ventriculomegaly, dysmorphic short CC and frontal cortical interdigitation. Autopsy demonstrated fronto-parietal predominant dysgyria, bilateral ventriculomegaly, hippocampal and CC hypoplasia, abnormal Sylvian fissure. Lamination and neuron morphology in the areas of dysgyria were normal. Conclusions: TUBB3 related cortical malformations can be mild, consistent with dysgyria rather than typical pachygyria or polymicrogyria. The autopsy findings in fetal TUBB3 related dysgyria are abnormal orientation of sulci and gyri, but normal neuron morphology and layering. We suggest that TUBB3-associated brain malformations can be suspected in-utero which in turn can aid in prognostic counselling and interpretation of genetic testing. (C) 2020 European Paediatric Neurology Society. Published by Elsevier Ltd. All rights reserved.