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11 to 20 of 51 Results
Jan 20, 2024 - RUEDL Christiane
Ruedl, Christiane; Ma, Ziyuan, 2022, "Turnover kinetics of pancreatic macrophages in lean and obese diabetic mice", https://doi.org/10.21979/N9/2YJP6X, DR-NTU (Data), V2
Pancreatic resident macrophages, a heterogeneous family of cells with distinct origins and phenotypes, are the main myeloid cells in exocrine and endocrine tissues. Adult exocrine F4/80hi macrophages consist of three different subsets based on the embryonic marker Tim-4 and MHC I...
Dec 6, 2023 - PD-L1 alternative splicing XR
Roca Castella, Francesc Xavier, 2023, "PD-L1 alternative splicing", https://doi.org/10.21979/N9/MICQRU, DR-NTU (Data), V1
PhD thesis of Dr Yashu Zhen, graduated in 2022. All data in thesis pertains to this project. Publication being put together with these data and new experiments being finished.
Nov 24, 2023 - Zhang Songjing
Zhang, Songjing; Chong, Lor Huai; Woon, Jessie Yong Xing; Chua, Theng Xuan; Cheruba, Elsie; Yip, Ai Kia; Li, Hoi-Yeung; Chiam, Keng-Hwee; Koh, Cheng-Gee, 2023, "Replication Data for: Zyxin regulates embryonic stem cell fate by modulating mechanical and biochemical signaling interface", https://doi.org/10.21979/N9/YKONJT, DR-NTU (Data), V4, UNF:6:4/9d732rN4fxhkQXCTtP2g== [fileUNF]
This dataset contains the raw data for the publication "Zyxin regulates embryonic stem cell fate by modulating mechanical and biochemical signaling interface".
Nov 24, 2023 - He Qianqian
He, Qianqian, 2023, "Replication Data for: Paxillin interactome identified by SILAC and label-free approaches coupled to TurboID sheds light on the compositions of focal adhesions in mouse embryonic stem cells", https://doi.org/10.21979/N9/ICZGIW, DR-NTU (Data), V1, UNF:6:N2K8RBc6tdu/b956BtP3XA== [fileUNF]
This dataset contains original raw data used for the paper “Paxillin interactome identified by SILAC and label-free approaches coupled to TurboID sheds light on the compositions of focal adhesions in mouse embryonic stem cells”.
Nov 5, 2023 - Konstantin Pervushin
Low, Kimberly Jia Yi, 2023, "Release of frustration drives corneal amyloid disaggregation by brain chaperone", https://doi.org/10.21979/N9/WE03HR, DR-NTU (Data), V1, UNF:6:egGlRaGzPyymUuoHsg8LKg== [fileUNF]
Final research data for research paper "Release of frustration drives corneal amyloid disaggregation by brain chaperone"
Jun 12, 2023 - Lu Lei
Shi, Meng; Lu, Lei, 2023, "Arl15-Smad4 source data file", https://doi.org/10.21979/N9/WRFNC2, DR-NTU (Data), V1, UNF:6:QvyFS1r8IkEIJYSRnVSLpg== [fileUNF]
Arl15-Smad4 source data file
May 26, 2023 - Oliver Martin Mueller-Cajar
Mueller-Cajar, Oliver Martin; Oh, Zhen Guo; Ang, Warren Shou Leong; Poh, Cheng Wei; Lai, Soak-Kuan; Sze, Siu Kwan; Li, Hoi-Yeung; Bhushan, Shashi; Wunder, Tobias, 2023, "Data for: A linker protein from a red-type pyrenoid phase separates with Rubisco via oligomerizing sticker motifs", https://doi.org/10.21979/N9/IXBAW5, DR-NTU (Data), V1, UNF:6:GPhkmD+8Q/grKqrY0Grexw== [fileUNF]
Original data files analyzed for this publication.
May 13, 2023 - Lu Lanyuan
Lu, Lanyuan, 2023, "Data for Investigating The Protein Phase Behavior In Polarized Fungal Growth By Coarse-Grained Molecular Simulation", https://doi.org/10.21979/N9/VCYLJT, DR-NTU (Data), V1
Final research data for MOE Tier 1 grant 2018-T1-001-096.
Oct 31, 2022 - Guillaume THIBAULT
Thibault, Guillaume; Yap, Wei Sheng, 2022, "A new combinatorial megaplasmid library assembly method designed to screen for minimal pathways by using SCRaMbLE", https://doi.org/10.21979/N9/XKMAEX, DR-NTU (Data), V1, UNF:6:5KJyBwAUciUBv92jsbfKDg== [fileUNF]
Human proteins expressed in yeast are common to enhance protein production while the expression of functional human pathways remain challenging. Here, we propose a simple and economical high-throughput gene assembly method to create a yeast megaplasmid library from human cDNA to...
Sep 27, 2022 - Guillaume THIBAULT
Thibault, Guillaume; Beaudoin-Chabot, Caroline; Wang, Lei; Celik, Cenk; Khalid, Aishah Abdul; Thalappilly, Subhash; Koh, Jhee Hong; Xu, Shiyi; Lim, Venus Wen Xuan; Low, Ann Don, 2022, "Replication Data for: The unfolded protein response reverses the effects of glucose on lifespan in chemically-sterilized C. elegans", https://doi.org/10.21979/N9/GEPEAG, DR-NTU (Data), V1, UNF:6:bDcV8UXFkGMeff3EFRkBYA== [fileUNF]
Metabolic diseases often share common traits, including accumulation of unfolded proteins in the endoplasmic reticulum (ER). Upon ER stress, the unfolded protein response (UPR) is activated to limit cellular damage which weakens with age. Here, we show that Caenorhabditis elegans...
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