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Lions Club to Host Fundraiser BBQ

The Livermore Lions Club will host a fundraising barbeque at Big Trees Park, 5470 Kathy Way, from 11 a.m. to 2 p.m. on Saturday, Sept. 9.

Livermore-lions-club
Big-trees-park
Livermore-valley
Ivermore
California
Flu
Clusterin
Fundraiser
Kathy-way
Lub-will-celebrate-its-100th-anniversary
Lions-club

"The extracellular chaperone clusterin prevents primary and secondary n" by Manjeet Kumar, Cristina Cantarutti et al.

Amyloid fibril formation by the extracellular protein β2-microglobulin (β2m) and its subsequent accumulation in periarticular tissues have been linked to dialysis-related amyloidosis. A natural variant of human β2m responsible for aggressive systemic amyloidosis contains an aspartate to asparagine mutation at residue 76 (i.e. D76N β2m), which readily forms amyloid fibrils in vitro under physiological conditions. In this study, we examined the role of the extracellular molecular chaperone clusterin in modulating D76N β2m fibril formation in vitro under physiological conditions. The presence of extrinsic charged amino acids modulated D76N β2m fibril formation, implying that electrostatic interactions are involved in the protein's aggregation. Thioflavin T (ThT) and 1-anilinonaphthalene-8-sulfonate fluorescence assays indicated that clusterin interacts via hydrophobic and electrostatic forces with the monomeric, prefibrillar and fibrillar species of D76N β2m. As a result, clus

Amyloid-fibril
Myloid-fibril-stability
Clusterin
76n-β2-microglobulin
Ialysis-related-amyloidosis
Olecular-chaperone
Rimary-nucleation
Econdary-nucleation

"Recombinant Human Clusterin Seals Damage to the Ocular Surface Barrier" by Shravan K. Chintala, Jinhong Pan et al.

There is a significant unmet need for therapeutics to treat ocular surface barrier damage, also called epitheliopathy, due to dry eye and related diseases. We recently reported that the natural tear glycoprotein CLU (clusterin), a molecular chaperone and matrix metalloproteinase inhibitor, seals and heals epitheliopathy in mice subjected to desiccating stress in a model of aqueous-deficient/evaporative dry eye. Here we investigated CLU sealing using a second model with features of ophthalmic preservative-induced dry eye. The ocular surface was stressed by topical application of the ophthalmic preservative benzalkonium chloride (BAC). Then eyes were treated with CLU and sealing was evaluated immediately by quantification of clinical dye uptake. A commercial recombinant form of human CLU (rhCLU), as well as an rhCLU form produced in our laboratory, designed to be compatible with U.S. Food and Drug Administration guidelines on current Good Manufacturing Practices (cGMP), were as effective

Drug-administration
Good-manufacturing-practices
Clusterin
Dry-eye
Pitheliopathy
Atrix-metalloproteinase-inhibitor
Olecular-chaperone
Ocular-surface

"The Extracellular Molecular Chaperone Clusterin Inhibits Amyloid Fibri" by Abigail K. Elias, Mark R. Wilson et al.

Clusterin is a glycoprotein present at high concentrations in many extracellular fluids, including semen. Its increased expression accompanies disorders associated with extracellular amyloid fibril accumulation such as Alzheimer’s disease. Clusterin is an extracellular molecular chaperone which prevents the misfolding and amorphous and amyloid fibrillar aggregation of a wide variety of unfolding proteins. In semen, amyloid fibrils formed from a 39-amino acid fragment of prostatic acid phosphatase, termed Semen-derived Enhancer of Virus Infection (SEVI), potentiate HIV infectivity. In this study, clusterin potently inhibited the in vitro formation of SEVI fibrils, along with dissociating them. Furthermore, clusterin reduced the toxicity of SEVI to pheochromocytoma-12 cells. In semen, clusterin may play an important role in preventing SEVI amyloid fibril formation, in dissociating SEVI fibrils and in mitigating their enhancement of HIV infection.

Semen-derived-enhancer
Virus-infection
Amyloid-fibril
Clusterin
Cytotoxicity
Olecular-chaperone
Protein-aggregation
Evi

"Roles of constitutively secreted extracellular chaperones in neuronal " by Sandeep Satapathy and Mark R. Wilson

Protein quality control involves many processes that jointly act to regulate the expression, localization, turnover, and degradation of proteins, and has been highlighted in recent studies as critical to the differentiation of stem cells during regeneration. The roles of constitutively secreted extracellular chaperones in neuronal injury and disease are poorly understood. Extracellular chaperones are multifunctional proteins expressed by many cell types, including those of the nervous system, known to facilitate protein quality control processes. These molecules exert pleiotropic effects and have been implicated as playing important protective roles in a variety of stress conditions, including tissue damage, infections, and local tissue inflammation. This article aims to provide a critical review of what is currently known about the functions of extracellular chaperones in neuronal repair and regeneration and highlight future directions for this important research area. We review what

Cell-viability
Clusterin
Extracellular-chaperones
Inflammation
Euroserpin
Protein-misfolding
Transthyretin

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