1.Bayesian localization microscopy based on intensity distribution of fluorophores.
Fan XU ; Mingshu ZHANG ; Zhiyong LIU ; Pingyong XU ; Fa ZHANG
Protein & Cell 2015;6(3):211-220
Super-resolution microscopy techniques have overcome the limit of optical diffraction. Recently, the Bayesian analysis of Bleaching and Blinking data (3B) method has emerged as an important tool to obtain super-resolution fluorescence images. 3B uses the change in information caused by adding or removing fluorophores in the cell to fit the data. When adding a new fluorophore, 3B selects a random initial position, optimizes this position and then determines its reliability. However, the fluorophores are not evenly distributed in the entire image region, and the fluorescence intensity at a given position positively correlates with the probability of observing a fluorophore at this position. In this paper, we present a Bayesian analysis of Bleaching and Blinking microscopy method based on fluorescence intensity distribution (FID3B). We utilize the intensity distribution to select more reliable positions as the initial positions of fluorophores. This approach can improve the reconstruction results and significantly reduce the computational time. We validate the performance of our method using both simulated data and experimental data from cellular structures. The results confirm the effectiveness of our method.
Animals
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Bayes Theorem
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COS Cells
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Cercopithecus aethiops
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Computer Simulation
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Green Fluorescent Proteins
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metabolism
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Microscopy, Fluorescence
;
methods
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Molecular Imaging
;
methods
2.The specific and rapid labeling of cell surface proteins with recombinant FKBP-fused fluorescent proteins.
Xi ZHANG ; Yongqiang DENG ; Hao CHANG ; Chen JI ; Mingshu ZHANG ; Jianxin PENG ; Tao XU ; Pingyong XU
Protein & Cell 2014;5(10):800-803
Amino Acid Substitution
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Exocytosis
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HEK293 Cells
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Humans
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Luminescent Proteins
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genetics
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metabolism
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Membrane Proteins
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chemistry
;
metabolism
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Microscopy, Confocal
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Protein Binding
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Recombinant Fusion Proteins
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biosynthesis
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chemistry
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genetics
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Sirolimus
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analogs & derivatives
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chemistry
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metabolism
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Tacrolimus Binding Proteins
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chemistry
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genetics
;
metabolism
3.Light-induced protein translocation by genetically encoded unnatural amino acid in Caenorhabditis elegans.
Hao CHANG ; Mei HAN ; Wenming HUANG ; Guifeng WEI ; Juanjuan CHEN ; Peng R CHEN ; Runsheng CHEN ; Junlong ZHANG ; Tao XU ; Pingyong XU
Protein & Cell 2013;4(12):883-886
Animals
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Caenorhabditis elegans
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metabolism
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radiation effects
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Caenorhabditis elegans Proteins
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genetics
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metabolism
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Light
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Lysine
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analogs & derivatives
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genetics
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metabolism
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Promoter Regions, Genetic
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Protein Transport
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RNA, Transfer
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genetics
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metabolism
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Tumor Necrosis Factor Ligand Superfamily Member 14
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metabolism
4.C13C4.5/Spinster, an evolutionarily conserved protein that regulates fertility in C. elegans through a lysosome-mediated lipid metabolism process.
Mei HAN ; Hao CHANG ; Peng ZHANG ; Tao CHEN ; Yanhua ZHAO ; Yongdeng ZHANG ; Pingsheng LIU ; Tao XU ; Pingyong XU
Protein & Cell 2013;4(5):364-372
Lipid droplets, which are conserved across almost all species, are cytoplasmic organelles used to store neutral lipids. Identification of lipid droplet regulators will be conducive to resolving obesity and other fat-associated diseases. In this paper, we selected 11 candidates that might be associated with lipid metabolism in Caenorhabditis elegans. Using a BODIPY 493/503-based flow cytometry screen, 6 negative and 3 positive regulators of fat content were identified. We selected one negative regulator of lipid content, C13C4.5, for future study. C13C4.5 was mainly expressed in the worm intestine. We found that this gene was important for maintaining the metabolism of lipid droplets. Biochemical results revealed that 50% of triacylglycerol (TAG) was lost in C13C4.5 knockout worms. Stimulated Raman scattering (SRS) signals in C13C4.5 mutants showed only 49.6% of the fat content in the proximal intestinal region and 86.3% in the distal intestinal region compared with wild type animals. The mean values of lipid droplet size and intensity in C13C4.5 knockout animals were found to be significantly decreased compared with those in wild type worms. The LMP-1-labeled membrane structures in worm intestines were also enlarged in C13C4.5 mutant animals. Finally, fertility defects were found in C13C4.5(ok2087) mutants. Taken together, these results indicate that C13C4.5 may regulate the fertility of C. elegans by changing the size and fat content of lipid droplets by interfering with lysosomal morphology and function.
Animals
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Biological Evolution
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Caenorhabditis elegans
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genetics
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growth & development
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metabolism
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Caenorhabditis elegans Proteins
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genetics
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metabolism
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Fertility
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Flow Cytometry
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Gene Knockout Techniques
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Humans
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Lipid Metabolism
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genetics
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Lysosomes
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genetics
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metabolism
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Membrane Proteins
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genetics
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Metabolic Networks and Pathways
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genetics
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Triglycerides
;
metabolism
5.HID-1 is a peripheral membrane protein primarily associated with the medial- and trans- Golgi apparatus.
Lifen WANG ; Yi ZHAN ; Eli SONG ; Yong YU ; Yaming JIU ; Wen DU ; Jingze LU ; Pingsheng LIU ; Pingyong XU ; Tao XU
Protein & Cell 2011;2(1):74-85
Caenorhabditis elegans hid-1 gene was first identified in a screen for mutants with a high-temperature-induced dauer formation (Hid) phenotype. Despite the fact that the hid-1 gene encodes a novel protein (HID-1) which is highly conserved from Caenorhabditis elegans to mammals, the domain structure, subcellular localization, and exact function of HID-1 remain unknown. Previous studies and various bioinformatic softwares predicted that HID-1 contained many transmembrane domains but no known functional domain. In this study, we revealed that mammalian HID-1 localized to the medial- and trans- Golgi apparatus as well as the cytosol, and the localization was sensitive to brefeldin A treatment. Next, we demonstrated that HID-1 was a peripheral membrane protein and dynamically shuttled between the Golgi apparatus and the cytosol. Finally, we verified that a conserved N-terminal myristoylation site was required for HID-1 binding to the Golgi apparatus. We propose that HID-1 is probably involved in the intracellular trafficking within the Golgi region.
Animals
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Brefeldin A
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pharmacology
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Cell Line, Tumor
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Cytosol
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drug effects
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metabolism
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Humans
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Intracellular Space
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drug effects
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metabolism
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Membrane Proteins
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metabolism
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Protein Transport
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drug effects
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Rats
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Vesicular Transport Proteins
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metabolism
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trans-Golgi Network
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drug effects
;
metabolism