Aim: The Ubiquitin (Ub)-proteasome system maintains cellular homeostasis through proteolysis, and Ub appears in the damaged cells of many organs. Nonspecific interstitial pneumonia (NSIP)in elderly patients was studied to clarify the relationship between Ub-positive cells, cellular damage, and resistance to therapy.
Methods: Specimens of surgical lung biopsy with the NSIP pattern (NSIP/P) from 13 patients (mean age, 68 years old) were examined histologically and immunohistochemically. Pneumocytes examined under high-power microscopy were counted for eosinophilic inclusion bodies and Ub-positive cells. NSIP/P was histologically evaluated and cases were scored for erosion and intraluminal granulation tissue subtypes (polypoid, mural, or occluded) as lung injury markers. NSIP/P was subdivided into cellular NSIP and fibrosing NSIP according to the proportions of interstitial inflammation and fibrosis.
Results: 1) Six of 13 patients with NSIP/P had Ub-positive cells (Ub+ group), and all inclusions identified by light-microscope were positive for Ub. A greater number of Ub+ pneumocytes were found compared with the inclusions by light-microscope, and Ub immunostaining was useful for the detection of the inclusions. 2) Granulation tissue scores in the Ub+ group were significantly greater than in the Ub- group (p<0.05); there was no difference in granulation tissue subtypes between the groups. 3) Granulation tissue scores in fibrosing NSIP/P (including each subtype) were significantly greater than in cellular NSIP/P. 4) After a follow-up period, there was no correlation between Ub+ group and NSIP therapy resistance or between the granulation tissue subtypes and therapy resistance.
Conclusion: Some elderly patients with NSIP had inclusions, and these inclusions were Ub+. Pneumocyte injury might occur via the Ub-proteasome system pathway in elderly patients with NSIP/P, although there was no correlation between Ub+ pneumocytes and therapy resistance.
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http://dx.doi.org/10.3143/geriatrics.46.146 | DOI Listing |
Autophagy
February 2023
Department of Neuroscience, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA, USA.
Neurons and astrocytes face unique demands on their proteome to enable proper function and survival of the nervous system. Consequently, both cell types are critically dependent on robust quality control pathways such as macroautophagy (hereafter referred to as autophagy) and the ubiquitin-proteasome system (UPS). We previously reported that autophagy is differentially regulated in astrocytes and neurons in the context of metabolic stress, but less is understood in the context of proteotoxic stress induced by inhibition of the UPS.
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October 2019
a Department of Neuroscience , Mayo Clinic, Jacksonville , FL , USA.
Unlabelled: Although exact causes of Parkinson disease (PD) remain enigmatic, mitochondrial dysfunction is increasingly appreciated as a key determinant of dopaminergic neuron susceptibility in both familial and sporadic PD. Two genes associated with recessive, early-onset PD encode the ubiquitin (Ub) kinase PINK1 and the E3 Ub ligase PRKN/PARK2/Parkin, which together orchestrate a protective mitochondrial quality control (mitoQC) pathway. Upon stress, both enzymes cooperatively identify and decorate damaged mitochondria with phosphorylated poly-Ub (p-S65-Ub) chains.
View Article and Find Full Text PDFAutophagy
October 2019
a Life Sciences Institute and Innovation Center for Cell Signaling Network , Zhejiang University, Hangzhou , China.
Unlabelled: Neurodegeneration is characterized by protein aggregate deposits and mitochondrial malfunction. Reduction in Tom40 (translocase of outer membrane 40) expression, a key subunit of the translocase of the outer mitochondrial membrane complex, led to accumulation of ubiquitin (Ub)-positive protein aggregates engulfed by Atg8a-positive membranes. Other macroautophagy markers were also abnormally accumulated.
View Article and Find Full Text PDFFASEB J
June 2018
State Key Laboratory of Molecular Biology, Chinese Academy of Sciences (CAS) Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology (SIBCB), University of CAS, Shanghai, China.
The components of ubiquitin (Ub)-proteasome system, such as Ub, Ub adaptors, or proteasome subunits, are commonly accumulated with the aggregated proteins in inclusions, but how protein aggregates sequester Ub-related proteins remains elusive. Using N-terminal huntingtin (Htt-N552) and ataxin (Atx)-3 as model proteins, we investigated the molecular mechanism underlying sequestration of Ub adaptors by polyQ-expanded proteins. We found that polyQ-expanded Htt-N552 and Atx-3 sequester endogenous Ub adaptors, human RAD23 homolog B (hHR23B) and ubiquilin (UBQLN)-2, into inclusions.
View Article and Find Full Text PDFJ Cell Biol
May 2017
State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China
Autophagy-dependent clearance of ubiquitinated and aggregated proteins is critical to protein quality control, but the underlying mechanisms are not well understood. Here, we report the essential role of the BEACH (beige and Chediak-Higashi) and WD40 repeat-containing protein WDR81 in eliminating ubiquitinated proteins through autophagy. WDR81 associates with ubiquitin (Ub)-positive protein foci, and its loss causes accumulation of Ub proteins and the autophagy cargo receptor p62.
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