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The human cytomegalovirus (HCMV) UL138 protein downregulates the cell surface expression of the multidrug resistance-associated protein 1 (MRP1) transporter. We examined the genetic requirements within UL138 for MRP1 downregulation. We determined that the acidic cluster dileucine motif is essential for UL138-mediated downregulation of MRP1 steady-state levels and inhibition of MRP1 efflux activity. We also discovered that the naturally occurring UL138 protein isoforms, the full-length long isoform of UL138 and a short isoform missing the N-terminal membrane-spanning domain, have different abilities to inhibit MRP1 function. Cells expressing the long isoform of UL138 show decreased MRP1 steady-state levels and fail to efflux an MRP1 substrate. Cells expressing the short isoform of UL138 also show decreased MRP1 levels, but the magnitude of the decrease is not the same, and they continue to efficiently efflux an MRP1 substrate. Thus, the membrane-spanning domain, while dispensable for a UL138-mediated decrease in MRP1 protein levels, is necessary for a functional inhibition of MRP1 activity. Our work defines the genetic requirements for UL138-mediated MRP1 downregulation and anticipates the possible evolution of viral escape mutants during the use of therapies targeting this function of UL138. HCMV UL138 curtails the activity of the MRP1 drug transporter by reducing its steady-state levels, leaving cells susceptible to killing by cytotoxic agents normally exported by MRP1. It has been suggested in the literature that capitalizing on this UL138-induced vulnerability could be a potential antiviral strategy against virally infected cells, particularly those harboring a latent infection during which UL138 is one of the few viral proteins expressed. Therefore, identifying the regions of UL138 required for MRP1 downregulation and predicting genetic variants that may be selected upon UL138-targeted chemotherapy are important ventures. Here we present the first structure-function examination of UL138 activity and determine that its transmembrane domain and acidic cluster dileucine Golgi sorting motif are required for functional MRP1 downregulation.
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http://dx.doi.org/10.1128/JVI.00430-19 | DOI Listing |
Toxicol Mech Methods
September 2025
Department of Neurology, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan Province, China.
Objective: Jaundice in neonates promotes unconjugated hyperbilirubinemia (UCB), which causes neurological disorders, and its management remains a challenge. This study evaluated the protective effect of docosahexaenoic acid (DHA) against UCB-induced neurotoxicity.
Method: Astrocyte cell lines were prepared and separated into four different groups: SAL group; DHA group treated with 50 µM DHA; UCB group treated with 50 µM UCB; and UCB + DHA group treated with 50 µM UCB along with 50 µM DHA.
J Pharm Sci
August 2025
Medical Techinology School, Qiqihar Medical University, Qiqihar, China. Electronic address:
The present study was designed to prepare co-encapsulated with shikonin/doxorubicin pH-sensitive liposomes (SHK/DOX-pHSL) and investigate their synergistic anti-cancer effect in drug-resistant breast cancer cells. SHK/DOX-pHSL exhibited a mean diameter of around 145 nm, with a polydispersity index about 0.25.
View Article and Find Full Text PDFRecent Pat Anticancer Drug Discov
August 2025
College of Traditional Chinese Medicine, Shandong Second Medical University, Weifang, 261053, China.
Drug resistance (MDR) poses a significant challenge in breast cancer (BrCa) treatment, resulting in reduced efficacy and increased tumor recurrence. Resolving MDR in BrCa is necessary for improving the clinical efficacy of antitumor therapy. However, the molecular mechanisms underlying MDR are complex and involve various biological processes, including ABC drug transporter-mediated drug efflux, abnormal drug metabolism, and the development of the tumor microenvironment.
View Article and Find Full Text PDFDrug Dev Res
August 2025
Colorectal Anal Surgery, The First Affiliated Hospital of Guangxi Medical University, Nanning, China.
5-Fluorouracil (5-FU)-based chemotherapy is a first-line treatment for advanced gastric cancer (GC); however, the development of resistance remains a major limitation to its clinical efficacy. This study aims to investigate the role of the MYB/IQGAP3 axis in mediating 5-FU resistance in GC. Using bioinformatics, we analyzed expression profiles of IQGAP3 and MYB in GC tissues and pinpointed their binding sites.
View Article and Find Full Text PDFAdv Sci (Weinh)
August 2025
Key Laboratory of Chemical Biology and Molecular Engineering of the National Ministry of Education, Institute of Biotechnology, Shanxi University, Taiyuan, 030031, China.
ABC transporter protein-mediated drug efflux is a significant contributor to induced resistance in breast cancer (BC). Novel therapies are therefore urgently needed to thwart chemoresistance. Herein, it is demonstrated that fusidic acid (FA) reduces the expression of ABC transporter proteins MRP1, P-gp, and BCRP, promotes the in vivo accumulation of agents, and exertes chemosensitizing effects.
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