Chuan He

Chuan He

University of Chicago

H-index: 160

North America-United States

Professor Information

University

University of Chicago

Position

The

Citations(all)

112946

Citations(since 2020)

75091

Cited By

63245

hIndex(all)

160

hIndex(since 2020)

123

i10Index(all)

490

i10Index(since 2020)

457

Email

University Profile Page

University of Chicago

Research & Interests List

Epigenetics

RNA methylation

DNA methylation

Top articles of Chuan He

The YTHDF proteins display distinct cellular functions on m6A-modified RNA

YTHDF proteins are main cytoplasmic ‘reader' proteins of RNA N6-methyladenosine (m6A) methylation in mammals. They are largely responsible for m6A-mediated regulation in the cell cytosol by controlling both mRNA translation and degradation. Recent functional and mechanistic investigations of the YTHDF proteins revealed that these proteins have different functions to enable versatile regulation of the epitranscriptome. Their divergent functions largely originate from their different amino acid sequences in the low-complexity N termini. Consequently, they have different phase separation propensities and possess distinct post-translational modifications (PTMs). Different PTMs, subcellular localizations, and competition among partner proteins have emerged as three major mechanisms that control the functions of these YTHDF proteins. We also summarize recent progress on critical roles of these YTHDF proteins …

Authors

Zhongyu Zou,Chuan He

Published Date

2024/4/26

Protocol for detecting RBM33-binding sites in HEK293T cells using PAR-CLIP-seq

RNA-binding proteins (RBPs) regulate gene expression both co-transcriptionally and post-transcriptionally. Here, we provide a protocol for photoactivatable ribonucleoside-enhanced crosslinking and immunoprecipitation followed by next-generation sequencing (PAR-CLIP-seq). PAR-CLIP-seq is a transcriptome-scale technique for identifying in vivo binding sites of RBPs at the single-nucleotide level. We detail procedures for the establishment of FLAG-RBM33 stable cell line, the sequencing library preparation, and the data analysis.

Authors

Fang Yu,Shun Liu,Allen C Zhu,Chuan He,Zhijian Qian

Journal

STAR protocols

Published Date

2024/3/15

Role of optical coherence tomography in pipeline embolization device for the treatment of vertebral–basilar artery dissecting aneurysms

BackgroundVertebral–basilar artery dissecting aneurysms (VADAs) are an uncommon phenomenon in all fields of cerebrovascular disease. The flow diverter (FD) can be used as an endoluminal reconstruction device that promotes neointima formation at the aneurysmal neck and preserves the parent artery. To date, imaging examinations such as CT angiography, MR angiography, and DSA are the main methods used to evaluate the vasculature of patients. However, none of these imaging methods can reveal the situation of neointima formation, which is of great importance in evaluating occlusion of VADAs, especially those treated with a FD.MethodsThree patients were included in the study from August 2018 to January 2019. All patients underwent preprocedural, postprocedural, and follow-up evaluations with high resolution MRI, DSA, and optical coherence tomography (OCT), as well as the formation of intima …

Authors

Yongjie Ma,Zhe Ji,Wanxin Yang,Li Li,Liqiang Han,Yu Liu,Yuanhao Guo,Adam A Dmytriw,Chuan He,Guilin Li,Hongqi Zhang

Journal

Journal of NeuroInterventional Surgery

Published Date

2024/3/1

KARR-seq reveals cellular higher-order RNA structures and RNA–RNA interactions

RNA fate and function are affected by their structures and interactomes. However, how RNA and RNA-binding proteins (RBPs) assemble into higher-order structures and how RNA molecules may interact with each other to facilitate functions remain largely unknown. Here we present KARR-seq, which uses N3-kethoxal labeling and multifunctional chemical crosslinkers to covalently trap and determine RNA–RNA interactions and higher-order RNA structures inside cells, independent of local protein binding to RNA. KARR-seq depicts higher-order RNA structure and detects widespread intermolecular RNA–RNA interactions with high sensitivity and accuracy. Using KARR-seq, we show that translation represses mRNA compaction under native and stress conditions. We determined the higher-order RNA structures of respiratory syncytial virus (RSV) and vesicular stomatitis virus (VSV) and identified RNA–RNA …

Authors

Tong Wu,Anthony Youzhi Cheng,Yuexiu Zhang,Jiayu Xu,Jinjun Wu,Li Wen,Xiao Li,Bei Liu,Xiaoyang Dou,Pingluan Wang,Linda Zhang,Jingyi Fei,Jianrong Li,Zhengqing Ouyang,Chuan He

Journal

Nature Biotechnology

Published Date

2024/1/18

Machine learning identifies cell-free DNA 5-hydroxymethylation biomarkers that detect occult colorectal cancer in PLCO Screening Trial subjects

Background Colorectal cancer (CRC) is a leading cause of cancer-related mortality, and CRC detection through screening improves survival rates. A promising avenue to improve patient screening compliance is the development of minimally-invasive liquid biopsy assays that target CRC biomarkers on circulating cell-free DNA (cfDNA) in peripheral plasma. In this report, we identify cfDNA biomarker candidate genes bearing the epigenetic mark 5-hydroxymethylcytosine (5hmC) that diagnose occult CRC up to 36 months prior to clinical diagnosis using the Prostate, Lung, Colorectal and Ovarian (PLCO) Cancer Screening Trial samples. Methods Archived PLCO Trial plasma samples containing cfDNA were obtained from the National Cancer Institute (NCI) biorepositories. Study subjects included those who were diagnosed with CRC within 36 months of blood collection (i.e., case, n = 201) and those who were not diagnosed with any cancer during an average of 16.3 years of follow-up (i.e., controls, n = 402). Following the extraction of 3 - 8 ng cfDNA from less than 300 microliters plasma, we employed the sensitive 5hmC-Seal chemical labeling approach, followed by next-generation sequencing (NGS). We then conducted association studies and machine-learning modeling to analyze the genome-wide 5hmC profiles within training and validation groups that were randomly selected at a 2:1 ratio. Results Despite the technical challenges associated with the PLCO samples (e.g., limited plasma volumes, low cfDNA amounts, and long archival times), robust genome-wide 5hmC profiles were successfully obtained from these samples. Association …

Authors

Diana C West-Szymanski,Zhou Zhang,Xiao-Long Cui,Krissana Kowitwanich,Lu Gao,Zifeng Deng,Urszula Dougherty,Craig Williams,Shannon Merkle,Matthew Moore,Chuan He,Marc Bissonnette,Wei Zhang

Journal

bioRxiv

Published Date

2024/2/26

Ultrafast bisulfite sequencing detection of 5-methylcytosine in DNA and RNA

Bisulfite sequencing (BS-seq) to detect 5-methylcytosine (5mC) is limited by lengthy reaction times, severe DNA damage, overestimation of 5mC level and incomplete C-to-U conversion of certain DNA sequences. We present ultrafast BS-seq (UBS-seq), which uses highly concentrated bisulfite reagents and high reaction temperatures to accelerate the bisulfite reaction by ~13-fold, resulting in reduced DNA damage and lower background noise. UBS-seq allows library construction from small amounts of purified genomic DNA, such as from cell-free DNA or directly from 1 to 100 mouse embryonic stem cells, with less overestimation of 5mC level and higher genome coverage than conventional BS-seq. Additionally, UBS-seq quantitatively maps RNA 5-methylcytosine (m5C) from low inputs of mRNA and allows the detection of m5C stoichiometry in highly structured RNA sequences. Our UBS-seq results identify …

Authors

Qing Dai,Chang Ye,Iryna Irkliyenko,Yiding Wang,Hui-Lung Sun,Yun Gao,Yushuai Liu,Alana Beadell,José Perea,Ajay Goel,Chuan He

Journal

Nature Biotechnology

Published Date

2024/1/2

BID-seq for transcriptome-wide quantitative sequencing of mRNA pseudouridine at base resolution

Pseudouridine (Ψ) is an abundant RNA modification that is present in and affects the functions of diverse non-coding RNA species, including rRNA, tRNA and small nuclear RNA. Ψ also exists in mammalian mRNA and probably exhibits functional roles; however, functional investigations of mRNA Ψ modifications in mammals have been hampered by the lack of a quantitative method that detects Ψ at base precision. We have recently developed bisulfite-induced deletion sequencing (BID-seq), which provides the community with a quantitative method to map RNA Ψ distribution transcriptome-wide at single-base resolution. Here, we describe an optimized BID-seq protocol for mapping Ψ distribution across cellular mRNAs, which includes fast steps in both library preparation and data analysis. This protocol generates highly reproducible results by inducing high deletion ratios at Ψ modification within diverse sequence …

Authors

Li-Sheng Zhang†,Chang Ye†,Cheng-Wei Ju†,Boyang Gao,Xinran Feng,Hui-Lung Sun,Jiangbo Wei,Fan Yang,Qing Dai,Chuan He

Published Date

2023/11/15

Redox regulation of m6A methyltransferase METTL3 in β-cells controls the innate immune response in type 1 diabetes

Type 1 Diabetes (T1D) is characterized by autoimmune-mediated destruction of insulin-producing β-cells. Several observations have renewed interest in the innate immune system as an initiator of the disease process against β-cells. Here, we show that N6-Methyladenosine (m6A) is an adaptive β-cell safeguard mechanism that accelerates mRNA decay of the 2’-5’-oligoadenylate synthetase (OAS) genes to control the antiviral innate immune response at T1D onset. m6A writer methyltransferase 3 (METTL3) levels increase drastically in human and mouse β-cells at T1D onset but rapidly decline with disease progression. Treatment of human islets and EndoC-βH1 cells with pro-inflammatory cytokines interleukin-1 β and interferon α mimicked the METTL3 upregulation seen at T1D onset. Furthermore, m6A-sequencing revealed the m6A hypermethylation of several key innate immune mediators including OAS1, OAS2, and OAS3 in human islets and EndoC-βH1 cells challenged with cytokines. METTL3 silencing in human pseudoislets or EndoC-βH1 cells enhanced OAS levels by increasing its mRNA stability upon cytokine challenge. Consistently, in vivo gene therapy, to prolong Mettl3 overexpression specifically in β-cells, delayed diabetes progression in the non-obese diabetic (NOD) mouse model of T1D by limiting the upregulation of Oas pointing to potential therapeutic relevance. Mechanistically, the accumulation of reactive oxygen species blocked METTL3 upregulation in response to cytokines, while physiological levels of nitric oxide promoted its expression in human islets. Furthermore, for the first time to our knowledge, we show that the …

Authors

Dario F De Jesus,Zijie Zhang,Natalie K Brown,Xiaolu Li,Matthew J Gaffrey,Sevim Kahraman,Jiangbo Wei,Jiang Hu,Giorgio Basile,Ling Xiao,Tariq M Rana,Clayton Mathews,Alvin C Powers,Mark A Atkinson,Decio L Eizirik,Sirano Dhe-Paganon,Audrey V Parent,Wei-Jun Qian,Chuan He,Rohit N Kulkarni

Journal

bioRxiv

Published Date

2023/2/16

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