72 Works

Additional file 6 of Metabolic engineering of Escherichia coli BW25113 for the production of 5-Aminolevulinic Acid based on CRISPR/Cas9 mediated gene knockout and metabolic pathway modification

Changchuan Ye, Yuting Yang, Xi Chen, Lijie Yang, Xia Hua, Mengjie Yang, Xiangfang Zeng & Shiyan Qiao
Additional file 6: Fig S6. Standard Plot for ALA measurement. x: the absorbance at 554 nm; y: ALA concentration of sample after diluted (mg/L).

Additional file 3 of PreAcrs: a machine learning framework for identifying anti-CRISPR proteins

Lin Zhu, Xiaoyu Wang, Fuyi Li & Jiangning Song
Additional file 1: Table S3. Performance of combinational features.

Additional file 2 of CASA: a comprehensive database resource for the COVID-19 Alternative Splicing Atlas

Yaxin Chen, Gang Wang, Jingyi Li, Lei Xia, Lin Zhu, Wenxing Li, Qiang Luo, Yinlu Liao, Yao Lin, Liyun Bi, Hubin Chen, Jiemei Chu, Yueqi Li, Jinming Su, Li Ye, Jun-jun Jiang, Hao Liang, Weimin Li & Sanqi An
Additional file 2: Table S2. Summary of alternative splicing records in CASA.

Additional file 1 of PreAcrs: a machine learning framework for identifying anti-CRISPR proteins

Lin Zhu, Xiaoyu Wang, Fuyi Li & Jiangning Song
Additional file 1: Table S1. Performance of all single features.

Additional file 2 of PreAcrs: a machine learning framework for identifying anti-CRISPR proteins

Lin Zhu, Xiaoyu Wang, Fuyi Li & Jiangning Song
Additional file 1: Table S2. Performance of ensemble features.

Additional file 2 of Different color regulation mechanism in willow barks determined using integrated metabolomics and transcriptomics analyses

Jie Zhou, Jiahui Guo, Qingsheng Chen, Baosong Wang, Xudong He, Qiang Zhuge & Pu Wang
Additional file 2: TableS6. The metabolites identified in positive ion mode.

Additional file 2 of Different color regulation mechanism in willow barks determined using integrated metabolomics and transcriptomics analyses

Jie Zhou, Jiahui Guo, Qingsheng Chen, Baosong Wang, Xudong He, Qiang Zhuge & Pu Wang
Additional file 2: TableS6. The metabolites identified in positive ion mode.

Additional file 3 of Different color regulation mechanism in willow barks determined using integrated metabolomics and transcriptomics analyses

Jie Zhou, Jiahui Guo, Qingsheng Chen, Baosong Wang, Xudong He, Qiang Zhuge & Pu Wang
Additional file 3: Table S7. The metabolites identified in negative ionmode.

Additional file 4 of Different color regulation mechanism in willow barks determined using integrated metabolomics and transcriptomics analyses

Jie Zhou, Jiahui Guo, Qingsheng Chen, Baosong Wang, Xudong He, Qiang Zhuge & Pu Wang
Additional file 4: Table S8. The differential expressed genes identified inwillow barks.

Inflammatory activation and immune cell infiltration are main biological characteristics of SARS-CoV-2 infected myocardium

Rui Zhang, Xi Chen, Wenjie Zuo, Zhenjun Ji, Yangyang Qu, Yamin Su, Mingming Yang, Pengfei Zuo, Genshan Ma & Yongjun Li
The severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) can target cardiomyocytes (CMs) to directly invade the heart resulting in high mortality. This study aims to explore the biological characteristics of SARS-CoV-2 infected myocardium based on omics by collecting transcriptome data and analyzing them with a series of bioinformatics tools. Totally, 86 differentially expressed genes (DEGs) were discovered in SARS-CoV-2 infected CMs, and 15 miRNAs were discovered to target 60 genes. Functional enrichment analysis indicated that these...

Inflammatory activation and immune cell infiltration are main biological characteristics of SARS-CoV-2 infected myocardium

Rui Zhang, Xi Chen, Wenjie Zuo, Zhenjun Ji, Yangyang Qu, Yamin Su, Mingming Yang, Pengfei Zuo, Genshan Ma & Yongjun Li
The severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) can target cardiomyocytes (CMs) to directly invade the heart resulting in high mortality. This study aims to explore the biological characteristics of SARS-CoV-2 infected myocardium based on omics by collecting transcriptome data and analyzing them with a series of bioinformatics tools. Totally, 86 differentially expressed genes (DEGs) were discovered in SARS-CoV-2 infected CMs, and 15 miRNAs were discovered to target 60 genes. Functional enrichment analysis indicated that these...

Selective autophagic degradation of ACLY (ATP citrate lyase) maintains citrate homeostasis and promotes oocyte maturation

Hainan He, Junling Wang, Xingmei Mou, Xin Liu, Qiao Li, Mingyue Zhong, Bingbing Luo, Zhisheng Yu, Jingjing Zhang, Tian Xu, Chengli Dou, Danya Wu, Wei Qing, Linhui Wu, Kai Zhou, Zhengang Fan, Tingting Wang, Taotao Hu, Xia Zhang, Jilong Zhou & Yi-Liang Miao
Macroautophagy/autophagy is a cellular and energy homeostatic mechanism that contributes to maintain the number of primordial follicles, germ cell survival, and anti-ovarian aging. However, it remains unknown whether autophagy in granulosa cells affects oocyte maturation. Here, we show a clear tendency of reduced autophagy level in human granulosa cells from women of advanced maternal age, implying a potential negative correlation between autophagy levels and oocyte quality. We therefore established a co-culture system and show that...

Epg5 deficiency leads to primary ovarian insufficiency due to WT1 accumulation in mouse granulosa cells

Wenwen Liu, Min Chen, Chao Liu, Liying Wang, Huafang Wei, Ruidan Zhang, Zhengxing Ren, Yinghong Chen, Mengcheng Luo, Jianguo Zhao, Hongwei Jiang, Fei Gao & Wei Li
Primary ovarian insufficiency (POI), also known as premature ovarian failure, is an ovarian defect in humans characterized by the premature depletion of ovarian follicles before the age of 40. However, the mechanisms underlying POI remain largely unknown. Here, we show that knockout of Epg5 (ectopic P-granules autophagy protein 5 homolog (C. elegans)) results in subfertility in female mice, which exhibit a POI-like phenotype. Single-cell RNA sequencing analysis revealed that the knockout of Epg5 affected the...

Additional file 4 of Evolution of the CBL and CIPK gene families in Medicago: genome-wide characterization, pervasive duplication, and expression pattern under salt and drought stress

Xiao-Xia Zhang, Xiao-Long Ren, Xiao-Tong Qi, Zhi-Min Yang, Xiao-Lei Feng, Tian Zhang, Hui-Jie Wang, Peng Liang, Qi-Ying Jiang, Wen-Jun Yang, Yuan Fu, Min Chen, Zhi-Xi Fu & Bo Xu
Additional file 4: Table S3. CBL protein sequences used to build phylogenetic tree.

Additional file 6 of Evolution of the CBL and CIPK gene families in Medicago: genome-wide characterization, pervasive duplication, and expression pattern under salt and drought stress

Xiao-Xia Zhang, Xiao-Long Ren, Xiao-Tong Qi, Zhi-Min Yang, Xiao-Lei Feng, Tian Zhang, Hui-Jie Wang, Peng Liang, Qi-Ying Jiang, Wen-Jun Yang, Yuan Fu, Min Chen, Zhi-Xi Fu & Bo Xu
Additional file 6: Table S4. CIPK protein sequences used to build phylogenetic tree.

Additional file 7 of Evolution of the CBL and CIPK gene families in Medicago: genome-wide characterization, pervasive duplication, and expression pattern under salt and drought stress

Xiao-Xia Zhang, Xiao-Long Ren, Xiao-Tong Qi, Zhi-Min Yang, Xiao-Lei Feng, Tian Zhang, Hui-Jie Wang, Peng Liang, Qi-Ying Jiang, Wen-Jun Yang, Yuan Fu, Min Chen, Zhi-Xi Fu & Bo Xu
Additional file 7: Table S5. Ks value of paralog pairs of CBL and CIPK genes in M. sativa spp. sativa.

Additional file 6 of NLRP3 inflammasome regulates astrocyte transformation in brain injury induced by chronic intermittent hypoxia

Ningning She, Yewen Shi, Yani Feng, Lina Ma, Yuqi Yuan, Yitong Zhang, Zine Cao, Xi Chen, Bingjie Zhao, Haiqin Liu & Xiaoyong Ren
Additional file 6: Table S1. The primer sequences uesd in RT-qPCR.

Knockdown of lncRNA PCAT6 suppresses the growth of non-small cell lung cancer cells by inhibiting macrophages M2 polarization via miR-326/KLF1 axis

Yun Chen, Chaojin Hong, Jing Qu, Junjun Chen & Zhiquan Qin
Non-small cell lung cancer (NSCLC) is the most common malignant tumor of lung, which seriously threatens the life of people. It has been reported that lncRNA prostate cancer-associated transcript 6 (PCAT6) could facilitate the metastasis of NSCLC cells. However, whether lncRNA PCAT6 in NSCLC cells could affect the tumor microenvironment (TME) remains unclear. In the present study, the level of PCAT6 in NSCLC cells was detected using RT-qPCR. The effects of PCAT6 knockdown on the...

Alleviative effects of foraging exercise on depressive-like behaviors in chronic mild stress-induced ischemic rat model

Xi Tao, Siyuan Wu, Wenjing Tang, Lu Li, Lijun Huang, Danheng Mo, Chujuan Liu, Tao Song, Shuling Wang, Jia Wang & Juan He
Poststroke depression (PSD) is a common complication that seriously affects the functional recovery and prognosis of an individual. As some patients with PSD fail to respond to drug therapy, it is urgent to find a viable alternative treatment. An active exercise program known as foraging exercise (FE), using food as bait, was designed. First, focal ischemia and chronic unpredictable mild stress (CUMS) were used to establish a PSD model in rats. FE was then performed...

ATG7-mediated autophagy facilitates embryonic stem cell exit from naive pluripotency and marks commitment to differentiation

Jilong Zhou, Hainan He, Jing-Jing Zhang, Xin Liu, Wang Yao, Chengyu Li, Tian Xu, Shu-Yuan Yin, Dan-Ya Wu, Cheng-Li Dou, Qiao Li, Jiani Xiang, Wen-Jing Xiong, Li-Yan Wang, Jun-ming Tang, Zhouyiyuan Xue, Xia Zhang & Yi-Liang Miao
Macroautophagy/autophagy is a conserved cellular mechanism to degrade unneeded cytoplasmic proteins and organelles to recycle their components, and it is critical for embryonic stem cell (ESC) self-renewal and somatic cell reprogramming. Whereas autophagy is essential for early development of embryos, no information exists regarding its functions during the transition from naive-to-primed pluripotency. Here, by using an in vitro transition model of ESCs to epiblast-like cells (EpiLCs), we find that dynamic changes in ATG7-dependent autophagy are...

ATG7-mediated autophagy facilitates embryonic stem cell exit from naive pluripotency and marks commitment to differentiation

Jilong Zhou, Hainan He, Jing-Jing Zhang, Xin Liu, Wang Yao, Chengyu Li, Tian Xu, Shu-Yuan Yin, Dan-Ya Wu, Cheng-Li Dou, Qiao Li, Jiani Xiang, Wen-Jing Xiong, Li-Yan Wang, Jun-Ming Tang, Zhouyiyuan Xue, Xia Zhang & Yi-Liang Miao
Macroautophagy/autophagy is a conserved cellular mechanism to degrade unneeded cytoplasmic proteins and organelles to recycle their components, and it is critical for embryonic stem cell (ESC) self-renewal and somatic cell reprogramming. Whereas autophagy is essential for early development of embryos, no information exists regarding its functions during the transition from naive-to-primed pluripotency. Here, by using an in vitro transition model of ESCs to epiblast-like cells (EpiLCs), we find that dynamic changes in ATG7-dependent autophagy are...

Selective autophagic degradation of ACLY (ATP citrate lyase) maintains citrate homeostasis and promotes oocyte maturation

Hainan He, Junling Wang, Xingmei Mou, Xin Liu, Qiao Li, Mingyue Zhong, Bingbing Luo, Zhisheng Yu, Jingjing Zhang, Tian Xu, Chengli Dou, Danya Wu, Wei Qing, Linhui Wu, Kai Zhou, Zhengang Fan, Tingting Wang, Taotao Hu, Xia Zhang, Jilong Zhou & Yi-Liang Miao
Macroautophagy/autophagy is a cellular and energy homeostatic mechanism that contributes to maintain the number of primordial follicles, germ cell survival, and anti-ovarian aging. However, it remains unknown whether autophagy in granulosa cells affects oocyte maturation. Here, we show a clear tendency of reduced autophagy level in human granulosa cells from women of advanced maternal age, implying a potential negative correlation between autophagy levels and oocyte quality. We therefore established a co-culture system and show that...

Protein disulfide isomerases (PDIs) negatively regulate ebolavirus structural glycoprotein expression in the endoplasmic reticulum (ER) via the autophagy-lysosomal pathway

Bin Wang, Jing Zhang, Xin Liu, Qingqing Chai, Xiaoran Lu, Xiaoyu Yao, Zhichang Yang, Liangliang Sun, Silas F. Johnson, Richard C Schwartz & Yong-Hui Zheng
Zaire ebolavirus (EBOV) causes a severe hemorrhagic fever in humans and non-human primates with high morbidity and mortality. EBOV infection is dependent on its structural glycoprotein (GP), but high levels of GP expression also trigger cell rounding, detachment, and downregulation of many surface molecules that is thought to contribute to its high pathogenicity. Thus, EBOV has evolved an RNA editing mechanism to reduce its GP expression and increase its fitness. We now report that the...

Additional file 2 of CASA: a comprehensive database resource for the COVID-19 Alternative Splicing Atlas

Yaxin Chen, Gang Wang, Jingyi Li, Lei Xia, Lin Zhu, Wenxing Li, Qiang Luo, Yinlu Liao, Yao Lin, Liyun Bi, Hubin Chen, Jiemei Chu, Yueqi Li, Jinming Su, Li Ye, Jun-jun Jiang, Hao Liang, Weimin Li & Sanqi An
Additional file 2: Table S2. Summary of alternative splicing records in CASA.

Additional file 1 of PreAcrs: a machine learning framework for identifying anti-CRISPR proteins

Lin Zhu, Xiaoyu Wang, Fuyi Li & Jiangning Song
Additional file 1: Table S1. Performance of all single features.

Registration Year

  • 2022
    72

Resource Types

  • Dataset
    72

Affiliations

  • Third Affiliated Hospital of Guangzhou Medical University
    72
  • Wuhan University
    58
  • Nanjing Medical University
    48
  • Southern Medical University
    47
  • Chinese Academy of Medical Sciences & Peking Union Medical College
    44
  • University of Chinese Academy of Sciences
    44
  • Sichuan University
    42
  • Chinese Academy of Sciences
    35
  • Nanjing Agricultural University
    33
  • Zhejiang University
    32