2020-07-15 2020, Volume 11 Issue 7

  • Select all
  • RECOLLECTION
    Yunjin Wang , Yanyan Qian
  • HIGHLIGHT
    Luyang Sun , Weiwei Dang
  • RESEARCH ARTICLE
    Shijia Bi , Zunpeng Liu , Zeming Wu , Zehua Wang , Xiaoqian Liu , Si Wang , Jie Ren , Yan Yao , Weiqi Zhang , Moshi Song , Guang-Hui Liu , Jing Qu

    SIRT7, a sirtuin family member implicated in aging and disease, is a regulator of metabolism and stress responses. It remains elusive how human somatic stem cell populations might be impacted by SIRT7. Here, we found that SIRT7 expression declines during human mesenchymal stem cell (hMSC) aging and that SIRT7 deficiency accelerates senescence. Mechanistically, SIRT7 forms a complex with nuclear lamina proteins and heterochromatin proteins, thus maintaining the repressive state of heterochromatin at nuclear periphery. Accordingly, deficiency of SIRT7 results in loss of heterochromatin, de-repression of the LINE1 retrotransposon (LINE1), and activation of innate immune signaling via the cGAS-STING pathway. These agingassociated cellular defects were reversed by overexpression of heterochromatin proteins or treatment with a LINE1 targeted reverse-transcriptase inhibitor. Together, these findings highlight how SIRT7 safeguards chromatin architecture to control innate immune regulation and ensure geroprotection during stem cell aging.

  • RESEARCH ARTICLE
    Lu Zhang , Yao Zhao , Ruogu Gao , Jun Li , Xiuna Yang , Yan Gao , Wei Zhao , Sudagar S. Gurcha , Natacha Veerapen , Sarah M. Batt , Kajelle Kaur Besra , Wenqing Xu , Lijun Bi , Xian’en Zhang , Luke W. Guddat8 , Haitao Yang , Quan Wang , Gurdyal S. Besra , Zihe Rao

    Inhibition of Mycobacterium tuberculosis (Mtb) cell wall assembly is an established strategy for anti-TB chemotherapy. Arabinosyltransferase EmbB, which catalyzes the transfer of arabinose from the donor decaprenyl-phosphate-arabinose (DPA) to its arabinosyl acceptor is an essential enzyme for Mtb cell wall synthesis. Analysis of drug resistance mutations suggests that EmbB is the main target of the front-line anti-TB drug, ethambutol. Herein, we report the cryo-EM structures of Mycobacterium smegmatis EmbB in its “resting state” and DPA-bound “active state”. EmbB is a fifteentransmembrane-spanning protein, assembled as a dimer. Each protomer has an associated acyl-carrierprotein (AcpM) on their cytoplasmic surface. Conformational changes upon DPA binding indicate an asymmetric movement within the EmbB dimer during catalysis. Functional studies have identified critical residues in substrate recognition and catalysis, and demonstrated that ethambutol inhibits transferase activity of EmbB by competing with DPA. The structures represent the first step directed towards a rational approach for anti-TB drug discovery.

  • LETTER
    Bingbing He , Wenbo Peng , Jia Huang , Hang Zhang , Yingsi Zhou , Xiali Yang , Jing Liu , Zhijie Li , Chunlong Xu , Mingxing Xue , Hui Yang , Pengyu Huang
  • LETTER
    Le Wen , Fei Zhao , Yong Qiu , Shuang Cheng , Jin-Yan Sun , Wei Fang , Simon Rayner , Michael A. McVoy , Xing-Jun Jiang , Qiyi Tang , Fang-Cheng Li , Fei Hu , Min-Hua Luo
  • LETTER
    Hongying Gao , Chunwei Zheng , Jian Du , Yue Wu , Yonghui Sun , Chunsheng Han , Kehkooi Kee , Yu Rao
  • CORRECTION
    Xiaoyan Sheng , Chenglei Tian , Linlin Liu , Lingling Wang , Xiaoying Ye , Jie Li , Ming Zeng , Lin Liu