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Kanazawa University research: How Cells Repair DNA’s Protective Barrier: A pathway to address a rare genetic disorder characterized by rapid aging in children

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KANAZAWA, Japan, Dec. 11, 2024 /PRNewswire/ — Researchers at Nano Life Science Institute (WPI-NanoLSI), Kanazawa University, have discovered how a protein called lamin A helps repair the protective barrier around a cell’s DNA. The findings reveal lamin A’s unique role and its potential for treating Hutchinson-Gilford Progeria Syndrome, a rare disorder that causes premature aging.

The nuclear envelope (NE) is a vital barrier that protects the cell’s genetic material. It is supported by the nuclear lamina (NL), a fibrous protein network composed of lamins, including lamin A (LA) and lamin C (LC). Mechanical stress or genetic abnormalities can cause ruptures in the NE, exposing the genetic material to damage. While lamin C rapidly accumulates at NE rupture sites to facilitate repair, lamin A exhibits slower and weaker localization.

This slower response poses significant challenges, especially in diseases like Hutchinson–Gilford Progeria Syndrome (HGPS). In HGPS, a mutation in the LMNA gene produces progerin, a defective variant of lamin A that remains permanently associated with the NE and disrupts repair mechanisms (Fig. 1). Because progerin’s impaired mobility reduces the reserve pool available for repair, cellular damage could be further compounded, contributing to accelerated aging symptoms in patients.

An international team of researchers led by Takeshi Shimi at the NanoLSI, Kanazawa University, aimed to solve a critical question: Why does lamin A localize more slowly to NE rupture sites compared to lamin C, and how does this difference impact nuclear stability in both normal and diseased states? Specifically, they sought to understand how lamin A’s unique tail region and the post-translational modifications, such as farnesylation, influence its localization and functionality.

Key Findings

Lamin A’s Tail Region
The researchers have identified specific sequences in lamin A’s tail region, termed “Lamin A-Characteristic Sequences” (LACS1 and LACS2) that inhibit its rapid localization to rupture sites (Fig.2).Progerin’s Impact in HGPS
Progerin’s defective structure leads to its permanent retention at the NE, reducing the nucleoplasmic pool of lamin A required for efficient NE repair. This delayed response contributes to nuclear instability and cellular aging.Therapeutic Potential
A farnesyltransferase inhibitor (FTI), lonafarnib (Zokinvy) improves progerin and lamin A mobility and increase its nucleoplasmic availability, significantly enhancing NE repair in both healthy and HGPS models (Fig.3). This drug is approved in the United States, Europe, and Japan for the treatment of patients with HGPS.

“This study bridges a critical gap in our understanding of Lamin A’s role in nuclear repair. It provides actionable insights for developing therapies targeting conditions where nuclear instability is a hallmark, such as HGPS,” say the authors.

Glossary

Nuclear Envelope (NE): A double membrane that encloses the nucleus, protecting the genetic material.Nuclear Lamina (NL): A fibrous network inside the nucleus that provides structural support and regulates gene expression.Lamin A (LA): A structural protein in the nuclear lamina critical for maintaining nuclear envelope stability.Hutchinson-Gilford Progeria Syndrome (HGPS): A genetic disorder caused by a mutation in the LMNA gene, leading to the production of progerin, a defective lamin A variant.Farnesylation: A lipid modification of proteins like Ras, crucial for their localization and function.Farnesyltransferase Inhibitors (FTIs): Drugs that block farnesylation, showing promise in restoring progerin and lamin A functionality.

Fig. 1 Delayed repair of nuclear envelope rupture in HGPS cells
https://nanolsi.kanazawa-u.ac.jp/wp/wp-content/uploads/Fig.1-1.png

Fig. 2 Schematic diagram of the difference in localization to the rupture sites between Lamin A, Lamin C, and Progerin
https://nanolsi.kanazawa-u.ac.jp/wp/wp-content/uploads/Fig2-5.png

Fig. 3 Delayed localization of lamin A to the rupture sites in HGPS cells
https://nanolsi.kanazawa-u.ac.jp/wp/wp-content/uploads/Fig3-3.png

Copyright for Fig. 1-3: © Kono, et al., 2024. Published by Oxford University Press on behalf of National Academy of Sciences.

Reference

Yohei Kono, Chan-Gi Pack, Takehiko Ichikawa, Arata Komatsubara, Stephen A Adam, Keisuke Miyazawa, Loïc Rolas, Sussan Nourshargh, Ohad Medalia, Robert D Goldman, Takeshi Fukuma, Hiroshi Kimura, Takeshi Shimi. Roles of the Lamin A-specific Tail Region in the Localization to Sites of Nuclear Envelope Rupture. Published online 21 November 2024. PNAS Nexus.

DOI: 10.1093/pnasnexus/pgae527
https://doi.org/10.1093/pnasnexus/pgae527

Author acknowledgements

We thank Biomaterials Analysis Division, Open Facility Center (OFC) of Tokyo Institute of Technology for nucleotide sequencing and sharing research equipment, especially Carl Zeiss ElyraS1/Airyscan/LSM780 is shared in MEXT Project Grant Number JPMXS0440200022. We also thank the Cellular Imaging Core Facility at the ConveRgence mEDIcine research cenTer (CREDIT), Asan Medical Center for technical support.

This work was supported by JSPS KAKENHI Grant Numbers JP20KK0158 (to T.S., Y.K., K.M. and H.K.), JP20K06617 (to T.S.), and JP18H05527 and JP21H04764 (to H.K.). This work was also supported by MEXT (World Premier International Research Center Initiative [WPI]). The generation and validation of the anti-murine progerin antibody was funded by the Wellcome Trust (098291/Z/12/Z to S.N.) and the British Heart Foundation (FS/IBSRF/22/25121 to L.R.).

Contact Information

Kimie Nishimura (Ms)
Project Planning and Outreach, NanoLSI Administration Office
Nano Life Science Institute, Kanazawa University
Email: nanolsi-office@adm.kanazawa-u.ac.jp 

About Nano Life Science Institute (WPI-NanoLSI), Kanazawa University

Understanding nanoscale mechanisms of life phenomena by exploring “uncharted nano-realms”.

Cells are the basic units of almost all life forms. We are developing nanoprobe technologies that allow direct imaging, analysis, and manipulation of the behavior and dynamics of important macromolecules in living organisms, such as proteins and nucleic acids, at the surface and interior of cells. We aim at acquiring a fundamental understanding of the various life phenomena at the nanoscale.

https://nanolsi.kanazawa-u.ac.jp/en/

About the World Premier International Research Center Initiative (WPI)

The WPI program was launched in 2007 by Japan’s Ministry of Education, Culture, Sports, Science and Technology (MEXT) to foster globally visible research centers boasting the highest standards and outstanding research environments. Numbering more than a dozen and operating at institutions throughout the country, these centers are given a high degree of autonomy, allowing them to engage in innovative modes of management and research. The program is administered by the Japan Society for the Promotion of Science (JSPS).

See the latest research news from the centers at the WPI News Portal: https://www.eurekalert.org/newsportal/WPI

Main WPI program site: www.jsps.go.jp/english/e-toplevel

About Kanazawa University

As the leading comprehensive university on the Sea of Japan coast, Kanazawa University has contributed greatly to higher education and academic research in Japan since it was founded in 1949. The University has three colleges and 17 schools offering courses in subjects that include medicine, computer engineering, and humanities.

The University is located on the coast of the Sea of Japan in Kanazawa – a city rich in history and culture. The city of Kanazawa has a highly respected intellectual profile since the time of the fiefdom (1598-1867). Kanazawa University is divided into two main campuses: Kakuma and Takaramachi for its approximately 10,200 students including 600 from overseas.

http://www.kanazawa-u.ac.jp/en/

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Mastech Digital to Announce Second Quarter 2026 Financial Results; Participate in Upcoming Investor Conference

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PITTSBURGH, July 24, 2026 /PRNewswire/ — Mastech Digital, Inc. (NYSE American: MHH) (“Mastech Digital”), a leading provider of Digital Transformation IT Services, today announced the date for the release of its financial results for the second quarter ended June 30, 2026, and its participation in an upcoming investor conference.

Second Quarter 2026 Earnings:

Mastech Digital will report its financial results for the second quarter 2026 before the market opens on Thursday, August 6, 2026. Management will host a live conference call and webcast at 9:00 a.m. Eastern Time on that day to discuss the Company’s financial performance and operating results.  The conference call will be hosted by Nirav Patel, President and CEO, and Kannan Sugantharaman, Chief Financial and Operations Officer.

Those wishing to participate via webcast should access the call through Mastech Digital’s Investor Relations website at https://investors.mastechdigital.com. Those wishing to participate via telephone may dial in at 1-800-715-9871 (USA) or 1-646-307-1963 (International) with the passcode 7506988. The replay will be available via webcast through Mastech Digital’s Investor Relations website.

Upcoming Investor Conference:

Mr. Sugantharaman will host a fireside chat at the Sidoti Micro-Cap Investor Conference on Wednesday, August 19, 2026, at 9:15 a.m. Eastern Time.

Mastech Digital management is scheduled to host virtual one-on-one and small group meetings with investors during the conference on August 19-20, 2026. Investors interested in arranging a meeting should contact their Sidoti representative or reach out to the Mastech Digital investor relations team at investors@mastechdigital.com.

About Mastech Digital, Inc.

Mastech Digital (NYSE American: MHH) is a leading provider of Digital Transformation IT Services. The Company offers Data Management, Analytics & AI Solutions, and IT Staffing Services with a digital-first approach. A minority-owned enterprise, Mastech Digital is headquartered in Pittsburgh, PA, with offices across the U.S., Canada, Europe, and India. Visit us at www.mastechdigital.com.

Investor Relations Contact:
investors@mastechdigital.com 

 

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SOLAI Limited Announces Extraordinary General Meeting

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AKRON, Ohio, July 24, 2026 /PRNewswire/ — SOLAI Limited (NYSE: SLAI) (“SOLAI” or the “Company”) (previously known as “BIT Mining Limited”), a technology-driven personal AI and digital infrastructure provider, today announced that it will hold its extraordinary general meeting of shareholders at 428 South Seiberling Street, Akron, Ohio, US on August 14, 2026 at 10:00 a.m., New York time.

Holders of record of ordinary shares and preference shares of the Company at the close of business on July 20, 2026, New York time (the “Record Date”) are entitled to receive notice of, and to attend and vote at, the extraordinary general meeting or any adjournment thereof. Holders of the Company’s American Depositary Shares (“ADSs”) who wish to exercise their voting rights for the underlying ordinary shares must act through the depositary of the Company’s ADS program, Deutsche Bank Trust Company Americas.

The notice of the extraordinary general meeting, which sets forth the resolutions to be submitted to shareholder approval at the extraordinary general meeting is available on the Investor Relations section of the Company’s website at https://ir.solai.com

About SOLAI Limited

SOLAI Limited (previously known as “BIT Mining Limited”) (NYSE: SLAI) (previously traded under “BTCM”) is a technology-driven personal AI and digital infrastructure provider. Building upon its historical legacy in digital asset mining and blockchain network operations, the Company is leveraging extensive experience in large-scale hardware deployment, data center operations, and high-performance computing to build the foundational infrastructure for personal AI computing and digital asset ecosystems globally.

For more information:

SOLAI Limited
ir@solai.com
ir.solai.com
www.solai.com 

Christensen Advisory
Jason Ng
Tel: +852-2117-0861
Email: solai@christensencomms.com 

 

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/U P D A T E — TrendAI/

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This release has been updated to include new information provided by TrendAI. The complete, corrected release follows, with additional details at the end:

TrendAI™ Adopts Claude Opus 5 to Advance Vulnerability Prioritization and Virtual Patching

As a participant in Anthropic’s Cyber Verification Program, TrendAI applies frontier reasoning to convert vulnerability intelligence into faster protection across hybrid environments

DALLAS, July 24, 2026 /PRNewswire/ — TrendAI™, the enterprise AI security leader from Trend Micro Incorporated (TYO: 4704; TSE: 4704), today announced it is adopting Claude Opus 5, Anthropic’s latest and most capable Opus model, to help security teams convert vulnerability intelligence into immediate protection, from prioritization to virtual patching. The move builds on TrendAI’s collaboration with Anthropic on Claude Opus 4.8, extending the same defensive focus to a model that delivers step-change gains in advanced reasoning, agentic workflows, and long-horizon analysis. As AI makes finding vulnerabilities easier than ever, the harder problem becomes protecting organizations faster than software can be permanently patched, and that is where TrendAI is putting Opus 5 to work.

As a participant in Anthropic’s Cyber Verification Program, which credentials organizations for the defensive use of frontier AI models, TrendAI is positioned to apply Claude Opus 5 to defensive security as access becomes available. The model is Zero Data Retention compatible, supporting TrendAI’s governance and data-protection requirements as it scales AI across security operations.

The work extends to TrendAI Threat Research, where frontier AI models are combined with our proprietary frontier intelligence engine and human expertise to generate pre-disclosure intelligence. Those insights power TrendAI Vision One™, delivering stronger detection, deeper forensic insights, and proactive protection through virtual patching.

Rachel Jin, Chief Platform and Business Officer, Head of TrendAI™:
“With Claude Opus 5, TrendAI can move from vulnerability intelligence to action faster than ever, prioritizing what matters most by exploitability and business impact. Finding the vulnerability was always the hard part. Now the challenge is protecting organizations faster than software can be permanently patched, and frontier reasoning is what changes that equation, extending all the way to virtual patching that protects customers before a vendor fix ships. This is what it means to secure the AI age, fearlessly.”

These capabilities support TrendAI Vision One™ in helping security analysts, AppSec teams, and SOC teams prioritize exposure, map attack paths, and accelerate mitigation, including virtual patching, across hybrid environments, moving vulnerability management from a static scanning process into a faster, context-aware risk mitigation workflow.

About TrendAI™
TrendAI™, the global AI security leader and enterprise business unit of Trend Micro, empowers organizations with full AI visibility and consolidated security that inspires confidence, drives innovation, and eliminates risk. Trusted by the largest enterprises and governments across 185 countries, TrendAI™ secures the entire organization, from identities, to infrastructure, to data. Global Fortune 500 companies rely on TrendAI™ to cut risk and stop threats up to three months earlier, powered by world-leading threat and attack intelligence. Through deep ecosystem partnerships with market leaders like NVIDIA, Anthropic, AWS, Google, and Microsoft, TrendAI™ empowers your organization to securely drive forward at the speed of AI. AI Fearlessly. Learn more: trendaisecurity.com

About Anthropic
Anthropic is an AI safety and research company dedicated to building reliable, interpretable, and steerable AI systems. Its Claude family of models, including Claude Opus 5, enables advanced capabilities across a wide range of applications, including code understanding and security analysis.

Update: The latest version of this release includes additional statements from TrendAI related to the original announcement.

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