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Bit-nae Kim

Seoul National University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Bit-nae Kim's research lab specializes in RNA biology, focusing on the molecular mechanisms underlying post-transcriptional gene regulation. The lab investigates non-coding RNAs, including microRNAs and novel small RNAs, with an emphasis on their biogenesis, function, and roles in development and disease. Key research directions include the regulation of mRNA stability and translation through RNA modifications—such as guanylation of poly(A) tails—and the systems-level analysis of transcriptomic and epitranscriptomic dynamics in neurobiology and viral infection. The lab also develops advanced sequencing technologies to enable accurate quantification of small RNAs and high-resolution mapping of viral and cellular transcriptomes.

post-transcriptional regulationsmall non-coding RNAsepitranscriptomicstranscriptome dynamicsRNA modification

Research Overview

Papers
212
Total Citations
38,350
Papers (5y)
45
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
45total
2021
2022
2023
2024
2025
Citations per year (5y)
1,382total
20212022202320242025

Selected Papers

15
1
Review|3,147 citations·2009
Biogenesis of small RNAs in animals
V. Narry Kim, Jinju Han, Mikiko C. Siomi
SJR Q1FWCI 117.1Nature Reviews Molecular Cell Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Review|2,507 citations·2005
MicroRNA biogenesis: coordinated cropping and dicing
V. Narry Kim
SJR Q1FWCI 44.8Nature Reviews Molecular Cell Biology
Cancer ResearchBiochemistry, Genetics and Molecular Biology
3
Article|1,527 citations·2006
Molecular Basis for the Recognition of Primary microRNAs by the Drosha-DGCR8 Complex
Jinju Han, Yoontae Lee, Kyu-Hyeon Yeom, Jin‐Wu Nam, Inha Heo, Je‐Keun Rhee, Sun Young Sohn, Yunje Cho, Byoung-Tak Zhang, V. Narry Kim
SJR Q1FWCI 37.6CellOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
4
Review|889 citations·2006
Genomics of microRNA
V. Narry Kim, Jin‐Wu Nam
SJR Q1FWCI 32.5Trends in Genetics
Cancer ResearchBiochemistry, Genetics and Molecular Biology
5
Article|773 citations·2009
TUT4 in Concert with Lin28 Suppresses MicroRNA Biogenesis through Pre-MicroRNA Uridylation
Inha Heo, Chirlmin Joo, Young Kook Kim, Minju Ha, Mi-Jeong Yoon, Jun Cho, Kyu‐Hyeon Yeom, Jinju Han, V. Narry Kim
SJR Q1FWCI 26.4CellOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
6
Article|293 citations·2001
Role of the Nonsense-Mediated Decay Factor hUpf3 in the Splicing-Dependent Exon-Exon Junction Complex
V. Narry Kim, Naoyuki Kataoka, Gideon Dreyfuss
SJR Q1FWCI 11.3Science

Nonsense-mediated messenger RNA (mRNA) decay, or NMD, is a critical process of selective degradation of mRNAs that contain premature stop codons. NMD depends on both pre-mRNA splicing and translation, and it requires recognition of the position of stop codons relative to exon-exon junctions. A key factor in NMD is hUpf3, a mostly nuclear protein that shuttles between the nucleus and cytoplasm and interacts specifically with spliced mRNAs. We found that hUpf3 interacts with Y14, a component of po

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Review|266 citations·2006
Small RNAs just got bigger: Piwi-interacting RNAs (piRNAs) in mammalian testes
V. Narry Kim
SJR Q1Genes & DevelopmentOA

Small RNAs constitute a large family of regulatory molecules with diverse functions in eukaryotes. Hallmarks of small RNAs are their dependence on double-stranded RNAs (dsRNA)-specific RNase III-type enzymes for biogenesis and their association with Argonaute family proteins for the silencing process. At least two classes of small RNAs have previously been described: microRNAs (miRNAs) derived from hairpin-shaped precursors and small interfering RNAs (siRNAs) generated from long dsRNAs. Recent a

Plant ScienceAgricultural and Biological Sciences
8
Article|230 citations·2018
PABP Cooperates with the CCR4-NOT Complex to Promote mRNA Deadenylation and Block Precocious Decay
Hyerim Yi, Joha Park, Minju Ha, Jaechul Lim, Hyeshik Chang, V. Narry Kim
SJR Q1FWCI 9.4Molecular CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|179 citations·2018
Mixed tailing by TENT4A and TENT4B shields mRNA from rapid deadenylation
Jaechul Lim, Dong-Wan Kim, Young-Suk Lee, Minju Ha, Mihye Lee, Jinah Yeo, Hyeshik Chang, Jaewon Song, Kwangseog Ahn, V. Narry Kim
SJR Q1FWCI 7.2Science

RNA tails play integral roles in the regulation of messenger RNA (mRNA) translation and decay. Guanylation of the poly(A) tail was discovered recently, yet the enzymology and function remain obscure. Here we identify TENT4A (PAPD7) and TENT4B (PAPD5) as the enzymes responsible for mRNA guanylation. Purified TENT4 proteins generate a mixed poly(A) tail with intermittent non-adenosine residues, the most common of which is guanosine. A single guanosine residue is sufficient to impede the deadenylas

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|179 citations·2021
The SARS-CoV-2 RNA interactome
Sung‐Yul Lee, Young-Suk Lee, Yeon Choi, Ahyeon Son, Youngran Park, Kyung‐Min Lee, Jeesoo Kim, Jong‐Seo Kim, V. Narry Kim
SJR Q1FWCI 11.7Molecular CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Preprint|163 citations·2020
The architecture of SARS-CoV-2 transcriptome
Dong-Wan Kim, Joo-Yeon Lee, Jeong‐Sun Yang, Jun Won Kim, V. Narry Kim, Hyeshik Chang
bioRxiv (Cold Spring Harbor Laboratory)OA

Summary SARS-CoV-2 is a betacoronavirus that is responsible for the COVID-19 pandemic. The genome of SARS-CoV-2 was reported recently, but its transcriptomic architecture is unknown. Utilizing two complementary sequencing techniques, we here present a high-resolution map of the SARS-CoV-2 transcriptome and epitranscriptome. DNA nanoball sequencing shows that the transcriptome is highly complex owing to numerous recombination events, both canonical and noncanonical. In addition to the genomic RNA

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|142 citations·2015
Multiple repressive mechanisms in the hippocampus during memory formation
Jun Cho, Nam‐Kyung Yu, Jun‐Hyeok Choi, Su-Eon Sim, SukJae Joshua Kang, Chuljung Kwak, Seung‐Woo Lee, Ji‐il Kim, Dong Il Choi, V. Narry Kim, Bong‐Kiun Kaang
SJR Q1FWCI 7.5Science

Memory stabilization after learning requires translational and transcriptional regulations in the brain, yet the temporal molecular changes that occur after learning have not been explored at the genomic scale. We used ribosome profiling and RNA sequencing to quantify the translational status and transcript levels in the mouse hippocampus after contextual fear conditioning. We revealed three types of repressive regulations: translational suppression of ribosomal protein-coding genes in the hippo

Cellular and Molecular NeuroscienceNeuroscience
13
Article|124 citations·2017
Genome-wide Mapping of DROSHA Cleavage Sites on Primary MicroRNAs and Noncanonical Substrates
Baekgyu Kim, Kyowon Jeong, V. Narry Kim
SJR Q1FWCI 4.7Molecular CellOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
14
Article|118 citations·2018
Bias-minimized quantification of microRNA reveals widespread alternative processing and 3′ end modification
Haedong Kim, Jimi Kim, Kijun Kim, Hyeshik Chang, Kwontae You, V. Narry Kim
SJR Q1FWCI 4.3Nucleic Acids ResearchOA

MicroRNAs (miRNAs) modulate diverse biological and pathological processes via post-transcriptional gene silencing. High-throughput small RNA sequencing (sRNA-seq) has been widely adopted to investigate the functions and regulatory mechanisms of miRNAs. However, accurate quantification of miRNAs has been limited owing to the severe ligation bias in conventional sRNA-seq methods. Here, we quantify miRNAs and their variants (known as isomiRs) by an improved sRNA-seq protocol, termed AQ-seq (accurat

Cancer ResearchBiochemistry, Genetics and Molecular Biology
15
Article|118 citations·2023
Structure of the human DICER–pre-miRNA complex in a dicing state
Young-Yoon Lee, Hansol Lee, Haedong Kim, V. Narry Kim, Soung‐Hun Roh
SJR Q1FWCI 28.2Nature
Cancer ResearchBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyCancer ResearchGeneticsPlant ScienceRadiology, Nuclear Medicine and ImagingCellular and Molecular Neuroscience

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