Myeongja Lee
Hanyang University · Biochemistry, Genetics and Molecular Biology
About the Lab
Professor Myeongja Lee's research lab focuses on molecular mechanisms underlying kidney physiology and disease, with a central emphasis on post-transcriptional gene regulation, particularly mRNA translation, in renal pathophysiology. The lab investigates how dysregulation of protein synthesis contributes to diabetic nephropathy, aging-related kidney fibrosis, and acute kidney injury, integrating molecular biology, cell signaling, and metabolic regulation. Key areas of investigation include ribosomal biogenesis, translational control via signaling pathways and microRNAs, and the role of extracellular matrix remodeling in kidney function. The lab also explores host-microbe interactions, particularly the immunomodulatory effects of probiotics such as Bifidobacterium on immune cells, linking gut microbiota to systemic and renal health.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Translation, a process of generating a peptide from the codons present in messenger RNA, can be a site of independent regulation of protein synthesis; it has not been well studied in the kidney. Translation occurs in three stages (initiation, elongation, and termination), each with its own set of regulatory factors. Mechanisms controlling translation include small inhibitory RNAs such as microRNAs, binding proteins, and signaling reactions. Role of translation in renal injury in diabetes, endopl
Ambient protein levels are under coordinated control of transcription, mRNA translation, and degradation. Whereas transcription and degradation mechanisms have been studied in depth in renal science, the role of mRNA translation, the process by which peptide synthesis occurs according to the genetic code that is present in the mRNA, has not received much attention. mRNA translation occurs in three phases: Initiation, elongation, and termination. Each phase is controlled by unique eukaryotic fact
We explored molecular events associated with aging-induced matrix changes in the kidney. C57BL6 mice were studied in youth, middle age, and old age. Albuminuria and serum cystatin C level (an index of glomerular filtration) increased with aging. Renal hypertrophy was evident in middle-aged and old mice and was associated with glomerulomegaly and increase in mesangial fraction occupied by extracellular matrix. Content of collagen types I and III and fibronectin was increased with aging; increment
Diabetes promotes protein synthesis to induce kidney hypertrophy and increase renal matrix proteins. Increased capacity for mRNA translation by way of ribosomal biogenesis facilitates sustained stimulation of protein synthesis. We tested the hypothesis that high glucose induces ribosomal biogenesis as indicated by an increase in rRNA synthesis in the setting of augmented protein synthesis. High glucose (30 mM) increased global protein synthesis, expression of matrix proteins, laminin γ1 and fibr
Bifidobacteria have been previously shown to stimulate the immune functions and cytokine production in macrophages and T-lymphocytes. Accordingly, the RAW 264.7 murine macrophage cell line was used to assess the effects of Bifidobacterium on the proliferation and cytoskeleton reorganization of the cells. Cytokine production after exposure to Bifidobacterium was also monitored in both whole cells and cell-free extracts. When RAW 264. 7 cells were cultured for 24 h in the presence of heat-killed B
OBJECTIVE: The objectives were to demonstrate that the nitrogen and energy in pig urine supplemented with hydrochloric acid (HCl) are not volatilized and to determine the minimum amount of HCl required for nitrogen preservation from pig urine. METHODS: In Exp. 1, urine samples of 3.0 L each with 5 different nitrogen concentrations were divided into 2 groups: 1.5 L of urine added with i) 100 mL of distilled water or ii) 100 mL of 6 N HCl. The urine in open plastic containers was placed on a labor
Kidney development is regulated by a coordinated reciprocal induction of metanephric mesenchymal (MM) and ureteric bud (UB) cells. Here, established MM and UB progenitor cell lines were recombined in three-dimensional Matrigel implants in SCID mice. Differentiation potential was examined for changes in phenotype, organization, and the presence of specialized proteins using immunofluorescence and bright-field and electron microscopy. Both cell types, when grown alone, did not develop into special
Na+-Ca2+ exchanger (NCX) transports Ca2+ coupled with Na+ across the plasma membrane in a bi-directional mode. Ca2+ flux via NCX mediates osteogenic processes, such as formation of extracellular matrix proteins and bone nodules. However, it is not clearly understood how the NCX regulates cellular Ca2+ movements in osteogenic processes. In this study, the role of NCX in modulating Ca2+ content of intracellular stores ([Ca2+]ER) was investigated by measuring intracellular Ca2+ activity in isolated
The clinicopathologic and immunohistochemical finding of 10 cases of nasal non-Hodgkin's lymphoma (NHL) and 23 cases of Waldeyer's ring NHL were studied. Immunohistochemically, nasal NHL expressed T-cell markers exclusively, whereas the NHL of Waldeyer's ring were of both T-cell (56.5%) and B-cell lineages (43.5%). Angioinvasiveness by tumor cells was exclusively noted in the T-lineage lymphomas. Epithelial hyperplasia, epitheliotropism by tumor cells, and extensive invasion of adjacent normal t
Radiation therapy for variety of human solid tumors utilizes mechanism of cell death after DNAdamage caused by radiation. In response to DNA damage, cytochrome c was released from mitochondriaby activation of pro-apoptotic Bcl-2 family proteins, and then elicits massive Ca2+ release from theER that lead to cell death. It was also suggested that irradiation may cause the deregulation of Ca2+homeostasis and trigger programmed cell death and regulate death specific enzymes. Thus, in thisstudy, we i
With the decoding of the human genome, there is an urgent need for greater understanding of how proteins are synthesized and how they function. This notion is predicated on the importance of proteins as ultimate arbiters of cell function. Studies restricted to investigation of changes in mRNA levels do not address changes in proteins and their function. A strict linear correlation between mRNA levels and proteins does not always exist (,). Therefore, it is imperative that protein metabolism be s
Research Areas
Dive deeper into Myeongja Lee's research on Nubint
Open this lab's papers in the app to read with AI, summarize, and cite in your writing.