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Basal bodies comprise nine symmetric triplet microtubules that anchor forces produced by the asymmetric beat pattern of motile cilia. The ciliopathy protein Poc1 stabilizes basal bodies through an unknown mechanism. In poc1∆ cells, electron tomography reveals subtle defects in the organization of intertriplet linkers (A-C linkers) that connect adjacent triplet microtubules. Complete triplet microtubules are lost preferentially near the posterior face of the basal body. Basal bodies that are missing triplets likely remain competent to assemble new basal bodies with nine triplet microtubules, suggesting that the mother basal body microtubule structure does not template the daughter. Our data indicate that Poc1 stabilizes basal body triplet microtubules through linkers between neighboring triplets. Without this stabilization, specific triplet microtubules within the basal body are more susceptible to loss, probably due to force distribution within the basal body during ciliary beating. This work provides insights into how the ciliopathy protein Poc1 maintains basal body integrity.
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http://dx.doi.org/10.1091/mbc.E16-03-0165 | DOI Listing |
Diabetes Ther
September 2025
Department of Diabetes and Endocrinology, Guy's and St Thomas' NHS Trust, London, UK.
Introduction: This post hoc analysis of an A Toujeo Observational Study (ATOS) aims to evaluate the real-world effectiveness and safety of insulin glargine 300 U/ml (Gla-300) in high-risk subgroups of insulin-naïve people with type 2 diabetes (PwT2D) from multiple geographical regions (Asia, the Middle East, North Africa, Latin America, and Eastern Europe).
Methods: In these post hoc analyses of ATOS, a real-world, 12-month, prospective study included 4422 insulin-naïve adults (age ≥ 18 years) with type 2 diabetes (T2D) uncontrolled (HbA > 7% and ≤ 11%) on one or more oral antidiabetic drugs (OADs) who initiated Gla-300 treatment as per routine practice. Primary and secondary endpoints were studied according to renal impairment (RI) status (without or with) and age group (≥ 70 years).
Brain
September 2025
Okinawa Institute of Science and Technology Graduate University, Okinawa, 904-0495, Japan.
Animal models of the pathology of Parkinson's disease (PD) have provided most of the treatments to date, but the disease is restricted to human patients. In vitro models using human pluripotent stem cells (hPSCs)-derived neural organoids have provided improved access to study PD etiology. This study established a method to generate human striatal-midbrain assembloids (hSMAs) from hPSCs for modeling alpha-synuclein (α-syn) propagation and recapitulating basal ganglia circuits, including nigrostriatal and striatonigral pathways.
View Article and Find Full Text PDFMar Life Sci Technol
August 2025
School of Life Sciences, State Key Laboratory of Microbial Technology, Shandong University, Qingdao, 266237 China.
Unlabelled: Mongolian gerbils had high ability to endure both high and cold temperatures. To study the mechanism of high ability for thermal adaptation, gerbils were acclimated to high temperature (30 °C) for 8 weeks, and were measured for metabolic features, body composition as well as mitochondrial content and activities. Lipidomic techniques were used to measure changes in mitochondrial membrane, including potential mitochondrial membrane remodeling during acute thermoregulation in gerbils.
View Article and Find Full Text PDFFront Microbiol
August 2025
College of Animal Science and Technology, College of Veterinary Medicine, Jilin Agricultural University, Changchun, Jilin, China.
Background: Maternal dietary intervention utilizing complex additives rich in β-carotene has demonstrated the capacity to enhance embryonic intestinal development and influence microbial composition in offspring. Nevertheless, the extended impact of maternal β-carotene inclusion on the intestinal health of post-hatching chicks is still not fully elucidated.
Objective: This research aimed to evaluate the impacts of maternal β-carotene supplementation on the intestinal development and microbial communities in chicks after hatching.
Cureus
August 2025
General Medicine, Queen Elizabeth Hospital Birmingham, Birmingham, GBR.
Diabetes mellitus is a metabolic condition leading to elevated blood glucose levels due to insulin deficiency, insulin resistance, or a combination of both. Chronically raised blood glucose levels can lead to a broad variety of microvascular and macrovascular complications. Neurological disorders are a common manifestation of diabetes mellitus, and poorly controlled diabetes mellitus frequently causes peripheral sensorimotor polyneuropathy and autonomic neuropathy.
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