mTORC1 in the Paneth cell niche couples intestinal stem-cell function to calorie intake
NATURE
Authors: Yilmaz, Oemer H.; Katajisto, Pekka; Lamming, Dudley W.; Gueltekin, Yetis; Bauer-Rowe, Khristian E.; Sengupta, Shomit; Birsoy, Kivanc; Dursun, Abdulmetin; Yilmaz, V. Onur; Selig, Martin; Nielsen, G. Petur; Mino-Kenudson, Mari; Zukerberg, Lawrence R.; Bhan, Atul K.; Deshpande, Vikram; Sabatini, David M.
Abstract
How adult tissue stem and niche cells respond to the nutritional state of an organism is not well understood. Here we find that Paneth cells, a key constituent of the mammalian intestinal stem-cell (ISC) niche, augment stem-cell function in response to calorie restriction. Calorie restriction acts by reducing mechanistic target of rapamycin complex 1 (mTORC1) signalling in Paneth cells, and the ISC-enhancing effects of calorie restriction can be mimicked by rapamycin. Calorie intake regulates mTORC1 in Paneth cells, but not ISCs, and forced activation of mTORC1 in Paneth cells during calorie restriction abolishes the ISC-augmenting effects of the niche. Finally, increased expression of bone stromal antigen 1 (Bst1) in Paneth cells-an ectoenzyme that produces the paracrine factor cyclic ADP ribose-mediates the effects of calorie restriction and rapamycin on ISC function. Our findings establish that mTORC1 non-cell-autonomously regulates stem-cell self-renewal, and highlight a significant role of the mammalian intestinal niche in coupling stem-cell function to organismal physiology.
Penetrance of LRRK2 G2385R and R1628P is modified by common PD-associated genetic variants
PARKINSONISM & RELATED DISORDERS
Authors: Wang, Chaodong; Cai, Yanning; Zheng, Zheng; Tang, Bei-Sha; Xu, Yanming; Wang, Tao; Ma, Jinghong; Chen, Sheng-Di; Langston, J. William; Tanner, Caroline M.; Chan, Piu
Abstract
Variants in the LRRK2 gene are well-characterized genetic predisposing factors for PD worldwide, and LRRK2-associated PD is often indistinguishable from idiopathic PD (IPD). However, considerable heterogeneity of LRRK2-PD suggests the existence of additional genetic and/or environmental modifiers for LRRK2 carriers, which have yet to be confirmed by large-scale human studies. In a Chinese cohort consisting of 2013 sporadic PD patients and 1971 controls, we investigated the modification of the two Asian-specific LRRK2 variants, G2385R and R1628P, by variants of five other PD-associated genes/loci (SNCA, MAPT, GBA, BST1, PARK16). Of all the PD patients, 13.1% carried LRRK2 G2385R and/or R1628P variant. Among these carriers, a total of 15 different polygenic genotypes were detected representing different combination patterns between LRRK2 variants and those of the other genes/loci, which, alone or in combination, significantly modified the LRRK2-related risk for PD and the patients' ages at onset (AAOs). These results not only represent the largest replication data affirming the association between PD and all the six genes/loci in Chinese, but for the first time suggest that multiple PD-associated genetic factors modify both the penetrance and AAO of LRRK2 parkinsonism. This finding may have important implications for elucidating pathophysiologic mechanisms relevant to both LRRK2-associated and idiopathic PD. However, testing interactions among multiple genes by genetic association studies is still challenging. Future studies with much larger sample sizes are needed to confirm our findings. (C) 2012 Elsevier Ltd. All rights reserved.