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Cell Stem Cell, October, 2011 DOI: 10.1016/j.stem.2011.09.001
Sox2 Adult Stem and Progenitor Cells Are Important for Tissue Regeneration and Survival of Mice
Katrin Arnold, Abby Sarkar, Mary Anna Yram, et al.
The transcription factor Sox2 maintains the pluripotency of early embryonic cells and regulates the formation of several epithelia during fetal development. Whether Sox2 continues to play a role in adult tissues remains largely unknown. We show here that Sox2 marks adult cells in several epithelial tissues where its expression has not previously been characterized, including the stomach, cervix, anus, testes, lens, and multiple glands. Genetic lineage tracing and transplantation experiments demonstrate that Sox2-expressing cells continuously give rise to mature cell types within these tissues, documenting their self-renewal and differentiation potentials. Consistent with these findings, ablation of Sox2(+) cells in mice results in a disruption of epithelial tissue homeostasis and lethality. Developmental fate mapping reveals that Sox2(+) adult stem cells originate from fetal Sox2(+) tissue progenitors. Thus, our results identify Sox2 expression in numerous adult endodermal and ectodermal stem cell compartments, which are critical for normal tissue regeneration and survival.
2. ÄÚÔ´ÐÔ»¯ºÏÎï×ÊÖúÀÏÊóÄæ×ªÌÇÄò²¡
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Cell Metabolism, 5 October 2011; 14(4) pp. 528 - 536 DOI:10.1016/j.cmet.2011.08.014
Nicotinamide mononucleotide, a key NAD intermediate, treats the pathophysiology of diet- and age-induced diabetes in mice
Jun Yoshino, Kathryn F. Mills, Myeong Jin Yoon, Shin-ichiro Imai.
Highlights
NAMPT-mediated NAD+ biosynthesis is compromised in metabolic organs by HFD
NMN ameliorates defects in NAD+ biosynthesis and glucose metabolism in T2D mice
NMN enhances hepatic insulin sensitivity by reversing gene expression caused by HFD
NMN also ameliorates defects in glucose and lipid metabolism in age-induced T2D mice
Summary
Type 2 diabetes (T2D) has become epidemic in our modern lifestyle, likely due to calorie-rich diets overwhelming our adaptive metabolic pathways. One such pathway is mediated by nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme in mammalian NAD+ biosynthesis, and the NAD+-dependent protein deacetylase SIRT1. Here, we show that NAMPT-mediated NAD+ biosynthesis is severely compromised in metabolic organs by high-fat diet (HFD). Strikingly, nicotinamide mononucleotide (NMN), a product of the NAMPT reaction and a key NAD+ intermediate, ameliorates glucose intolerance by restoring NAD+ levels in HFD-induced T2D mice. NMN also enhances hepatic insulin sensitivity and restores gene expression related to oxidative stress, inflammatory response, and circadian rhythm, partly through SIRT1 activation. Furthermore, NAD+ and NAMPT levels show significant decreases in multiple organs during aging, and NMN improves glucose intolerance and lipid profiles in age-induced T2D mice. These findings provide critical insights into a potential nutriceutical intervention against diet- and age-induced T2D.
3. ±¥ºÍÖ¬·¾ËáÓë²»±¥ºÍÖ¬·¾Ëá¶Ô·ÊÅÖºÍÌÇÄò²¡µÄ²î±ðÓ°Ïì
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Cell, 2011; 147 (1): 173-184 DOI: 10.1016/j.cell.2011.08.034
Saturated Fatty Acids Induce c-Src Clustering within Membrane Subdomains, Leading to JNK Activation
Ryan G. Holzer, Eek-Joong Park, Ning Li, Helen Tran, et al.
Highlights
c-Src is necessary for JNK activation by saturated free fatty acids
Saturated fatty acids activate c-Src and alter its membrane distribution
Adipocytes of obese mice exhibit altered c-Src distribution and activation
Unsaturated fatty acids prevent altered c-Src distribution and JNK activation
Summary
Saturated fatty acids (FA) exert adverse health effects and are more likely to cause insulin resistance and type 2 diabetes than unsaturated FA, some of which exert protective and beneficial effects. Saturated FA, but not unsaturated FA, activate Jun N-terminal kinase (JNK), which has been linked to obesity and insulin resistance in mice and humans. However, it is unknown how saturated and unsaturated FA are discriminated. We now demonstrate that saturated FA activate JNK and inhibit insulin signaling through c-Src activation. FA alter the membrane distribution of c-Src, causing it to partition into intracellular membrane subdomains, where it likely becomes activated. Conversely, unsaturated FA with known beneficial effects on glucose metabolism prevent c-Src membrane partitioning and activation, which are dependent on its myristoylation, and block JNK activation. Consumption of a diabetogenic high-fat diet causes the partitioning and activation of c-Src within detergent insoluble membrane subdomains of murine adipocytes.
4. ¿¹Ñ¬È¾µÄлúÖÆ
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Nature Immunology, 2011; DOI: 10.1038/ni.2106
Mucosal memory CD8 T cells are selected in the periphery by an MHC class I molecule
Yujun Huang, Yunji Park, Yiran Wang-Zhu, et al.
The presence of immune memory at pathogen-entry sites is a prerequisite for protection. Nevertheless, the mechanisms that warrant immunity at peripheral interfaces are not understood. Here we show that the nonclassical major histocompatibility complex (MHC) class I molecule thymus leukemia antigen (TL), induced on dendritic cells interacting with CD8¦Á¦Á on activated CD8¦Á¦Â+ T cells, mediated affinity-based selection of memory precursor cells. Furthermore, constitutive expression of TL on epithelial cells led to continued selection of mature CD8¦Á¦Â+ memory T cells. The memory process driven by TL and CD8¦Á¦Á was essential for the generation of CD8¦Á¦Â+ memory T cells in the intestine and the accumulation of highly antigen-sensitive CD8¦Á¦Â+ memory T cells that form the first line of defense at the largest entry port for pathogens.
5. ¿¹°©Ò©Îï¿ÉÄÜÓÃÓÚÖÎÁÆÑªÎü³æ²¡
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PNAS, 2011; 108 (17): 6999 DOI: 10.1073/pnas.1100652108
From the Cover: Discovery and molecular characterization of a Bcl-2-regulated cell death pathway in schistosomes
E. F. Lee, O. B. Clarke, M. Evangelista, et al.
Schistosomiasis is an infectious disease caused by parasites of the phylum platyhelminthe. Here, we describe the identification and characterization of a Bcl-2¨Cregulated apoptosis pathway in Schistosoma japonicum and S. mansoni. Genomic, biochemical, and cell-based mechanistic studies provide evidence for a tripartite pathway, similar to that in humans including BH3-only proteins that are inhibited by prosurvival Bcl-2¨Clike molecules, and Bax/Bak-like proteins that facilitate mitochondrial outer-membrane permeabilization. Because Bcl-2 proteins have been successfully targeted with ¡°BH3 mimetic¡± drugs, particularly in the treatment of cancer, we investigated whether schistosome apoptosis pathways could provide targets for future antischistosomal drug discovery efforts. Accordingly, we showed that a schistosome prosurvival protein, sjA, binds ABT-737, a well-characterized BH3 mimetic. A crystal structure of sjA bound to a BH3 peptide provides direct evidence for the feasibility of developing BH3 mimetics to target Bcl-2 prosurvival proteins in schistosomes, suggesting an alternative application for this class of drugs beyond cancer treatment.
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Proc Natl Acad Sci, 108: 17016- 17021 DOI: 10.1073/pnas.1112169108
CCAAT/enhancer binding protein ¦Á (C/EBP ¦Á)-induced transdifferentiation of pre-B cells into macrophages involves no overt retrodifferentiation
Di Tullio, A. et al.
Earlier work has shown that pre-B cells can be converted into macrophages by the transcription factor CCAAT/enhancer binding protein ¦Á at very high frequencies. Using this system, we performed a systematic analysis of whether during transdifferentiation the cells transiently reactivate progenitor-restricted genes or even retrodifferentiate. A transcriptome analysis of transdifferentiating cells showed that most genes are up- or down-regulated continuously, acquiring a macrophage phenotype within 5 d. In addition, we observed the transient reactivation of a subset of immature myeloid markers, as well as low levels of the progenitor markers Kit and FMS-like tyrosine kinase 3 and a few lineage-inappropriate genes. Importantly, however, we were unable to observe the reexpression of cell-surface marker combinations that characterize hematopoietic stem and progenitor cells, including c-Kit and FMS-like tyrosine kinase 3, even when CAAT/enhancer binding protein ¦Á was activated in pre-B cells under culture conditions that favor growth of hematopoietic stem and progenitor cells or when the transcription factor was activated in a time-limited fashion. Together, our findings are consistent with the notion that the conversion from pre-B cells to macrophages is mostly direct and does not involve overt retrodifferentiation.