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Full-Text Articles in Cell Biology

Expression Of Mitochondrial Membrane-Linked Sab Determines Severity Of Sex-Dependent Acute Liver Injury, Sanda Win, Robert W. M. Min, Christopher Q. Chen, Jun Zhang, Yibu Chen, Meng Li, Ayako Suzuki, Manal F. Abdelmalek, Ying Wang, Mariam Aghajan, Filbert W. M. Aung, Anna Mae Diehl, Roger J. Davis, Tin A. Than, Neil Kaplowitz Sep 2019

Expression Of Mitochondrial Membrane-Linked Sab Determines Severity Of Sex-Dependent Acute Liver Injury, Sanda Win, Robert W. M. Min, Christopher Q. Chen, Jun Zhang, Yibu Chen, Meng Li, Ayako Suzuki, Manal F. Abdelmalek, Ying Wang, Mariam Aghajan, Filbert W. M. Aung, Anna Mae Diehl, Roger J. Davis, Tin A. Than, Neil Kaplowitz

University of Massachusetts Medical School Faculty Publications

SAB is an outer membrane docking protein for JNK mediated impaired mitochondrial function. Deletion of Sab in hepatocytes inhibits sustained JNK activation and cell death. Current work demonstrated that increasing SAB enhanced the severity of APAP liver injury. Female mice were resistant to liver injury and exhibited markedly decreased hepatic SAB protein expression versus males. The mechanism of SAB repression involved a pathway from ERalpha to p53 expression which induced miR34a-5p. miR34a-5p targeted the Sab mRNA coding region, repressing SAB expression. Fulvestrant or p53 knockdown decreased miR34a-5p and increased SAB in females leading to increased injury from APAP and TNF ...


Nuclear Export Through Nuclear Envelope Remodeling In Saccharomyces Cerevisiae, Baojin Ding, Anne M. Mirza, James A. Ashley, Vivian Budnik, Mary Munson Jun 2018

Nuclear Export Through Nuclear Envelope Remodeling In Saccharomyces Cerevisiae, Baojin Ding, Anne M. Mirza, James A. Ashley, Vivian Budnik, Mary Munson

University of Massachusetts Medical School Faculty Publications

In eukaryotes, subsets of exported mRNAs are organized into large ribonucleoprotein (megaRNP) granules. How megaRNPs exit the nucleus is unclear, as their diameters are much larger than the nuclear pore complex (NPC) central channel. We previously identified a non-canonical nuclear export mechanism in Drosophila (Speese et al., Cell 2012) and mammals (Ding et al., in preparation), in which megaRNPs exit the nucleus by budding across nuclear envelope (NE) membranes. Here, we present evidence for a similar pathway in the nucleus of the budding yeast S. cerevisiae, which contain morphologically similar granules bearing mRNAs. Wild-type yeast displayed these granules at very ...


Imp3 Stabilization Of Wnt5b Mrna Facilitates Taz Activation In Breast Cancer, Sanjoy Samanta, Santosh Guru, Ameer L. Elaimy, John J. Amante, Jianhong Ou, Jun Yu, Lihua Julie Zhu, Arthur M. Mercurio May 2018

Imp3 Stabilization Of Wnt5b Mrna Facilitates Taz Activation In Breast Cancer, Sanjoy Samanta, Santosh Guru, Ameer L. Elaimy, John J. Amante, Jianhong Ou, Jun Yu, Lihua Julie Zhu, Arthur M. Mercurio

University of Massachusetts Medical School Faculty Publications

Insulin-like growth factor-2 mRNA-binding protein 3 (IMP3) is an oncofetal protein associated with many aggressive cancers and implicated in the function of breast cancer stem cells (CSCs). The mechanisms involved, however, are poorly understood. We observed that IMP3 facilitates the activation of TAZ, a transcriptional co-activator of Hippo signaling that is necessary for the function of breast CSCs. The mechanism by which IMP3 activates TAZ involves both mRNA stability and transcriptional regulation. IMP3 stabilizes the mRNA of an alternative WNT ligand (WNT5B) indirectly by repressing miR145-5p, which targets WNT5B, resulting in TAZ activation by alternative WNT signaling. IMP3 also facilitates ...


Single-Molecule Fish In Drosophila Muscle Reveals Location Dependent Mrna Composition Of Megarnps, Akiko Noma, Carlas Smith, Maximiliaan Huisman, Robert M. Martin, Melissa J. Moore, David Grünwald Jun 2017

Single-Molecule Fish In Drosophila Muscle Reveals Location Dependent Mrna Composition Of Megarnps, Akiko Noma, Carlas Smith, Maximiliaan Huisman, Robert M. Martin, Melissa J. Moore, David Grünwald

University of Massachusetts Medical School Faculty Publications

Single-molecule fluorescence in-situ hybridization (smFISH) provides direct access to the spatial relationship between nucleic acids and specific subcellular locations. The ability to precisely localize a messenger RNA can reveal key information about its regulation. Although smFISH is well established in cell culture or thin sections, methods for its accurate application to tissues are lacking. The utility of smFISH in thick tissue sections must overcome several challenges, including probe penetration of fixed tissue, accessibility of target mRNAs for probe hybridization, high fluorescent background, spherical aberration along the optical axis, and image segmentation of organelles. Here we describe how we overcame these ...