이현식 프로필 사진

이현식

Lee Hyunshik

자연과학대학

생명공학부

Web Of Science Scopus ORCID

자료 필터

자료유형

발행연도

2012 ~ 2025
2012 2025

키워드

언어

전체 34건 중 11번부터 20번까지의 결과를 표시합니다.

2025
Article

Aspalathin, a key flavonoid in rooibos, restores STAT6-mediated immune dysregulation in atopic dermatitis

  • 2025-03
  • Biomedicine & Pharmacotherapy
  • Elsevier Masson s.r.l.
Article

Deciphering melanophagy: role of the PTK2-ITCH-MLANA-OPTN cascade on melanophagy in melanocytes

  • 2025-03
  • Autophagy
  • TAYLOR & FRANCIS INC
2024
Article

Increased ER stress by depletion of PDIA6 impairs primary ciliogenesis and enhances sensitivity to ferroptosis in kidney cells

  • 2024-10
  • BMB Reports
  • KOREAN SOCIETY BIOCHEMISTRY & MOLECULAR BIOLOGY
Article

Actin Depolymerizing Factor Destrin Regulates Cilia Development and Function during Vertebrate Embryogenesis

  • Youni Kim ; 
  • 이현경 ; 
  • Kyeong-Yeon Park ; 
  • TayabaIsmail ; 
  • 이홍찬 ; 
  • ... 이현식
  • 2024-09
  • 발생과 생식
  • 한국발생생물학회
Article

Non-canonical deubiquitination of OTUB1 induces IFNγ-mediated cell cycle arrest via regulation of p27 stability

  • 2024-06-10
  • Oncogene
  • SPRINGERNATURE
Article

Actin depolymerizing factor destrin governs cell migration in neural development during Xenopus embryogenesis

  • 2024-06
  • Molecules and Cells
  • KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
Article

Yeast Small Ubiquitin-Like Modifier (SUMO) Protease Ulp2 is Involved in RNA Splicing

  • 2024-06
  • 발생과 생식
  • 한국발생생물학회
Article

Early life exposure to perfluorooctanesulfonate (PFOS) impacts vital biological processes in Xenopus laevis: Integrated morphometric and transcriptomic analyses

  • 2024-01-01
  • Ecotoxicology and Environmental Safety
  • ACADEMIC PRESS INC ELSEVIER SCIENCE
2023
Article

Ruvbl1 is Essential for Ciliary Beating during Xenopus laevis Embryogenesis

  • 김찬영 ; 
  • 이현경 ; 
  • 이홍찬 ; 
  • 이현식
  • 2023-09
  • 발생과 생식
  • 한국발생생물학회
Article

Enhanced primary ciliogenesis via mitochondrial oxidative stress activates AKT to prevent neurotoxicity in HSPA9/mortalin-depleted SH-SY5Y cells

  • 2023-05-11
  • Molecular Brain
  • BMC