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1.
Proc Natl Acad Sci U S A ; 121(23): e2308531121, 2024 Jun 04.
Artículo en Inglés | MEDLINE | ID: mdl-38805288

RESUMEN

Many animals exhibit remarkable colors that are produced by the constructive interference of light reflected from arrays of intracellular guanine crystals. These animals can fine-tune their crystal-based structural colors to communicate with each other, regulate body temperature, and create camouflage. While it is known that these changes in color are caused by changes in the angle of the crystal arrays relative to incident light, the cellular machinery that drives color change is not understood. Here, using a combination of 3D focused ion beam scanning electron microscopy (FIB-SEM), micro-focused X-ray diffraction, superresolution fluorescence light microscopy, and pharmacological perturbations, we characterized the dynamics and 3D cellular reorganization of crystal arrays within zebrafish iridophores during norepinephrine (NE)-induced color change. We found that color change results from a coordinated 20° tilting of the intracellular crystals, which alters both crystal packing and the angle at which impinging light hits the crystals. Importantly, addition of the dynein inhibitor dynapyrazole-a completely blocked this NE-induced red shift by hindering crystal dynamics upon NE addition. FIB-SEM and microtubule organizing center (MTOC) mapping showed that microtubules arise from two MTOCs located near the poles of the iridophore and run parallel to, and in between, individual crystals. This suggests that dynein drives crystal angle change in response to NE by binding to the limiting membrane surrounding individual crystals and walking toward microtubule minus ends. Finally, we found that intracellular cAMP regulates the color change process. Together, our results provide mechanistic insight into the cellular machinery that drives structural color change.


Asunto(s)
Pez Cebra , Animales , Norepinefrina/metabolismo , Norepinefrina/farmacología , Color , Pigmentación/fisiología , Microscopía Electrónica de Rastreo , Proteínas de Pez Cebra/metabolismo , Proteínas de Pez Cebra/genética , Proteínas de Pez Cebra/química
2.
Proc Natl Acad Sci U S A ; 121(13): e2401625121, 2024 Mar 26.
Artículo en Inglés | MEDLINE | ID: mdl-38507449

RESUMEN

Molecular motors employ chemical energy to generate unidirectional mechanical output against a track while navigating a chaotic cellular environment, potential disorder on the track, and against Brownian motion. Nevertheless, decades of nanometer-precise optical studies suggest that myosin-5a, one of the prototypical molecular motors, takes uniform steps spanning 13 subunits (36 nm) along its F-actin track. Here, we use high-resolution interferometric scattering microscopy to reveal that myosin takes strides spanning 22 to 34 actin subunits, despite walking straight along the helical actin filament. We show that cumulative angular disorder in F-actin accounts for the observed proportion of each stride length, akin to crossing a river on variably spaced stepping stones. Electron microscopy revealed the structure of the stepping molecule. Our results indicate that both motor and track are soft materials that can adapt to function in complex cellular conditions.


Asunto(s)
Actinas , Miosina Tipo V , Actinas/química , Miosinas/química , Citoesqueleto de Actina/química , Movimiento (Física) , Miosina Tipo V/química
3.
Mol Biol Cell ; 35(2): ar14, 2024 Feb 01.
Artículo en Inglés | MEDLINE | ID: mdl-38019611

RESUMEN

Myosin 10 (Myo10) couples microtubules and integrin-based adhesions to movement along actin filaments via its microtubule-binding MyTH4 domain and integrin-binding FERM domain, respectively. Here we show that Myo10-depleted HeLa cells and mouse embryo fibroblasts (MEFs) both exhibit a pronounced increase in the frequency of multipolar spindles. Staining of unsynchronized metaphase cells showed that the primary driver of spindle multipolarity in Myo10-depleted MEFs and in Myo10-depleted HeLa cells lacking supernumerary centrosomes is pericentriolar material (PCM) fragmentation, which creates y-tubulin-positive acentriolar foci that serve as extra spindle poles. For HeLa cells possessing supernumerary centrosomes, Myo10 depletion further accentuates spindle multipolarity by impairing the clustering of the extra spindle poles. Complementation experiments show that Myo10 must interact with both microtubules and integrins to promote PCM/pole integrity. Conversely, Myo10 only needs interact with integrins to promote supernumerary centrosome clustering. Importantly, images of metaphase Halo-Myo10 knockin cells show that the myosin localizes exclusively to the spindle and the tips of adhesive retraction fibers. We conclude that Myo10 promotes PCM/pole integrity in part by interacting with spindle microtubules, and that it promotes supernumerary centrosome clustering by supporting retraction fiber-based cell adhesion, which likely serves to anchor the microtubule-based forces driving pole focusing.


Asunto(s)
Centrosoma , Huso Acromático , Ratones , Humanos , Animales , Células HeLa , Huso Acromático/metabolismo , Centrosoma/metabolismo , Microtúbulos/metabolismo , Miosinas/metabolismo , Integrinas/metabolismo , Mitosis
4.
Biosensors (Basel) ; 13(10)2023 Sep 24.
Artículo en Inglés | MEDLINE | ID: mdl-37887098

RESUMEN

The increasing popularity of 3D cell culture models is being driven by the demand for more in vivo-like conditions with which to study the biochemistry and biomechanics of numerous biological processes in health and disease. Spheroids and organoids are 3D culture platforms that self-assemble and regenerate from stem cells, tissue progenitor cells or cell lines, and that show great potential for studying tissue development and regeneration. Organ-on-a-chip approaches can be used to achieve spatiotemporal control over the biochemical and biomechanical signals that promote tissue growth and differentiation. These 3D model systems can be engineered to serve as disease models and used for drug screens. While culture methods have been developed to support these 3D structures, challenges remain to completely recapitulate the cell-cell and cell-matrix biomechanical interactions occurring in vivo. Understanding how forces influence the functions of cells in these 3D systems will require precise tools to measure such forces, as well as a better understanding of the mechanobiology of cell-cell and cell-matrix interactions. Biosensors will prove powerful for measuring forces in both of these contexts, thereby leading to a better understanding of how mechanical forces influence biological systems at the cellular and tissue levels. Here, we discussed how biosensors and mechanobiological research can be coupled to develop accurate, physiologically relevant 3D tissue models to study tissue development, function, malfunction in disease, and avenues for disease intervention.


Asunto(s)
Técnicas Biosensibles , Organoides , Comunicación Celular , Fenómenos Biomecánicos , Dispositivos Laboratorio en un Chip
5.
Nature ; 620(7976): 1109-1116, 2023 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-37612506

RESUMEN

Dominant optic atrophy is one of the leading causes of childhood blindness. Around 60-80% of cases1 are caused by mutations of the gene that encodes optic atrophy protein 1 (OPA1), a protein that has a key role in inner mitochondrial membrane fusion and remodelling of cristae and is crucial for the dynamic organization and regulation of mitochondria2. Mutations in OPA1 result in the dysregulation of the GTPase-mediated fusion process of the mitochondrial inner and outer membranes3. Here we used cryo-electron microscopy methods to solve helical structures of OPA1 assembled on lipid membrane tubes, in the presence and absence of nucleotide. These helical assemblies organize into densely packed protein rungs with minimal inter-rung connectivity, and exhibit nucleotide-dependent dimerization of the GTPase domains-a hallmark of the dynamin superfamily of proteins4. OPA1 also contains several unique secondary structures in the paddle domain that strengthen its membrane association, including membrane-inserting helices. The structural features identified in this study shed light on the effects of pathogenic point mutations on protein folding, inter-protein assembly and membrane interactions. Furthermore, mutations that disrupt the assembly interfaces and membrane binding of OPA1 cause mitochondrial fragmentation in cell-based assays, providing evidence of the biological relevance of these interactions.


Asunto(s)
Microscopía por Crioelectrón , GTP Fosfohidrolasas , Mitocondrias , GTP Fosfohidrolasas/química , GTP Fosfohidrolasas/genética , GTP Fosfohidrolasas/metabolismo , GTP Fosfohidrolasas/ultraestructura , Fusión de Membrana , Mitocondrias/enzimología , Mitocondrias/metabolismo , Mitocondrias/patología , Dinámicas Mitocondriales , Membranas Mitocondriales/metabolismo , Mutación , Nucleótidos/metabolismo , Unión Proteica/genética , Dominios Proteicos , Pliegue de Proteína , Multimerización de Proteína , Estructura Secundaria de Proteína , Humanos
6.
bioRxiv ; 2023 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-37398378

RESUMEN

Myosin 10 (Myo10) has the ability to link actin filaments to integrin-based adhesions and to microtubules by virtue of its integrin-binding FERM domain and microtubule-binding MyTH4 domain, respectively. Here we used Myo10 knockout cells to define Myo10's contribution to the maintenance of spindle bipolarity, and complementation to quantitate the relative contributions of its MyTH4 and FERM domains. Myo10 knockout HeLa cells and mouse embryo fibroblasts (MEFs) both exhibit a pronounced increase in the frequency of multipolar spindles. Staining of unsynchronized metaphase cells showed that the primary driver of spindle multipolarity in knockout MEFs and knockout HeLa cells lacking supernumerary centrosomes is pericentriolar material (PCM) fragmentation, which creates γ-tubulin-positive acentriolar foci that serve as additional spindle poles. For HeLa cells possessing supernumerary centrosomes, Myo10 depletion further accentuates spindle multipolarity by impairing the clustering of the extra spindle poles. Complementation experiments show that Myo10 must interact with both integrins and microtubules to promote PCM/pole integrity. Conversely, Myo10's ability to promote the clustering of supernumerary centrosomes only requires that it interact with integrins. Importantly, images of Halo-Myo10 knock-in cells show that the myosin localizes exclusively within adhesive retraction fibers during mitosis. Based on these and other results, we conclude that Myo10 promotes PCM/pole integrity at a distance, and that it facilitates supernumerary centrosome clustering by promoting retraction fiber-based cell adhesion, which likely provides an anchor for the microtubule-based forces driving pole focusing.

7.
bioRxiv ; 2023 Jul 16.
Artículo en Inglés | MEDLINE | ID: mdl-37503193

RESUMEN

Molecular motors employ chemical energy to generate unidirectional mechanical output against a track. By contrast to the majority of macroscopic machines, they need to navigate a chaotic cellular environment, potential disorder in the track and Brownian motion. Nevertheless, decades of nanometer-precise optical studies suggest that myosin-5a, one of the prototypical molecular motors, takes uniform steps spanning 13 subunits (36 nm) along its F-actin track. Here, we use high-resolution interferometric scattering (iSCAT) microscopy to reveal that myosin takes strides spanning 22 to 34 actin subunits, despite walking straight along the helical actin filament. We show that cumulative angular disorder in F-actin accounts for the observed proportion of each stride length, akin to crossing a river on variably-spaced stepping stones. Electron microscopy revealed the structure of the stepping molecule. Our results indicate that both motor and track are soft materials that can adapt to function in complex cellular conditions.

8.
J Cell Sci ; 136(5)2023 03 01.
Artículo en Inglés | MEDLINE | ID: mdl-36917212

RESUMEN

Non-muscle myosin 2 (NM2) motors are the major contractile machines in most cell types. Unsurprisingly, these ubiquitously expressed actin-based motors power a plethora of subcellular, cellular and multicellular processes. In this Cell Science at a Glance article and the accompanying poster, we review the biochemical properties and mechanisms of regulation of this myosin. We highlight the central role of NM2 in multiple fundamental cellular processes, which include cell migration, cytokinesis, epithelial barrier function and tissue morphogenesis. In addition, we highlight recent studies using advanced imaging technologies that have revealed aspects of NM2 assembly hitherto inaccessible. This article will hopefully appeal to both cytoskeletal enthusiasts and investigators from outside the cytoskeleton field who have interests in one of the many basic cellular processes requiring actomyosin force production.


Asunto(s)
Citoesqueleto de Actina , Actinas , Actinas/metabolismo , Citoesqueleto de Actina/metabolismo , Actomiosina/metabolismo , Movimiento Celular , Miosinas/metabolismo
9.
Cells ; 11(12)2022 06 12.
Artículo en Inglés | MEDLINE | ID: mdl-35741037

RESUMEN

Signaling through the TNF-family receptor Fas/CD95 can trigger apoptosis or non-apoptotic cellular responses and is essential for protection from autoimmunity. Receptor clustering has been observed following interaction with Fas ligand (FasL), but the stoichiometry of Fas, particularly when triggered by membrane-bound FasL, the only form of FasL competent at inducing programmed cell death, is not known. Here we used super-resolution microscopy to study the behavior of single molecules of Fas/CD95 on the plasma membrane after interaction of Fas with FasL on planar lipid bilayers. We observed rapid formation of Fas protein superclusters containing more than 20 receptors after interactions with membrane-bound FasL. Fluorescence correlation imaging demonstrated recruitment of FADD dependent on an intact Fas death domain, with lipid raft association playing a secondary role. Flow-cytometric FRET analysis confirmed these results, and also showed that some Fas clustering can occur in the absence of FADD and caspase-8. Point mutations in the Fas death domain associated with autoimmune lymphoproliferative syndrome (ALPS) completely disrupted Fas reorganization and FADD recruitment, confirming structure-based predictions of the critical role that these residues play in Fas-Fas and Fas-FADD interactions. Finally, we showed that induction of apoptosis correlated with the ability to form superclusters and recruit FADD.


Asunto(s)
Apoptosis , Receptor fas , Apoptosis/fisiología , Análisis por Conglomerados , Proteína Ligando Fas/metabolismo , Proteína de Dominio de Muerte Asociada a Fas/metabolismo , Receptores del Factor de Necrosis Tumoral/metabolismo , Receptor fas/metabolismo
10.
Cells ; 11(11)2022 05 31.
Artículo en Inglés | MEDLINE | ID: mdl-35681501

RESUMEN

Much remains to be learned about the molecular mechanisms underlying a class of human disorders called actinopathies. These genetic disorders are characterized by loss-of-function mutations in actin-associated proteins that affect immune cells, leading to human immunopathology. However, much remains to be learned about how cytoskeletal dysregulation promotes immunological dysfunction. The current study reveals that the macrophage actin cytoskeleton responds to LPS/IFNγ stimulation in a biphasic manner that involves cellular contraction followed by cellular spreading. Myosin II inhibition by blebbistatin blocks the initial contraction phase and lowers iNOS protein levels and nitric oxide secretion. Conversely, conditional deletion of Arp2/3 complex in macrophages attenuates spreading and increases nitric oxide secretion. However, iNOS transcription is not altered by loss of myosin II or Arp2/3 function, suggesting post-transcriptional regulation of iNOS by the cytoskeleton. Consistent with this idea, proteasome inhibition reverses the effects of blebbistatin and rescues iNOS protein levels. Arp2/3-deficient macrophages demonstrate two additional phenotypes: defective MHCII surface localization, and depressed secretion of the T cell chemokine CCL22. These data suggest that interplay between myosin II and Arp2/3 influences macrophage activity, and potentially impacts adaptive-innate immune coordination. Disrupting this balance could have detrimental impacts, particularly in the context of Arp2/3-associated actinopathies.


Asunto(s)
Activación de Macrófagos , Óxido Nítrico , Citoesqueleto de Actina/metabolismo , Complejo 2-3 Proteico Relacionado con la Actina/metabolismo , Actinas/metabolismo , Señales (Psicología) , Miosina Tipo II/metabolismo
11.
J Cell Sci ; 135(12)2022 06 15.
Artículo en Inglés | MEDLINE | ID: mdl-35583107

RESUMEN

Capping protein Arp2/3 myosin I linker (CARMIL) proteins are multi-domain scaffold proteins that regulate actin dynamics by regulating the activity of capping protein (CP). Here, we characterize CARMIL-GAP (GAP for GTPase-activating protein), a Dictyostelium CARMIL isoform that contains a ∼130 residue insert that, by homology, confers GTPase-activating properties for Rho-related GTPases. Consistent with this idea, this GAP domain binds Dictyostelium Rac1a and accelerates its rate of GTP hydrolysis. CARMIL-GAP concentrates with F-actin in phagocytic cups and at the leading edge of chemotaxing cells, and CARMIL-GAP-null cells exhibit pronounced defects in phagocytosis and chemotactic streaming. Importantly, these defects are fully rescued by expressing GFP-tagged CARMIL-GAP in CARMIL-GAP-null cells. Finally, rescue with versions of CARMIL-GAP that lack either GAP activity or the ability to regulate CP show that, although both activities contribute significantly to CARMIL-GAP function, the GAP activity plays the bigger role. Together, our results add to the growing evidence that CARMIL proteins influence actin dynamics by regulating signaling molecules as well as CP, and that the continuous cycling of the nucleotide state of Rho GTPases is often required to drive Rho-dependent biological processes.


Asunto(s)
Proteínas de Capping de la Actina , Dictyostelium , Proteínas de Capping de la Actina/metabolismo , Citoesqueleto de Actina/metabolismo , Actinas/metabolismo , Proteínas Portadoras/metabolismo , Dictyostelium/genética , Dictyostelium/metabolismo , Proteínas Activadoras de GTPasa/genética , Proteínas Activadoras de GTPasa/metabolismo , Proteínas de Microfilamentos/genética , Proteínas de Microfilamentos/metabolismo
12.
Am J Health Syst Pharm ; 79(15): 1290-1295, 2022 07 22.
Artículo en Inglés | MEDLINE | ID: mdl-35439812

RESUMEN

PURPOSE: To describe the implementation of a pharmacy residency resiliency program (PRRP) for postgraduate year 1 (PGY1) and postgraduate year 2 (PGY2) pharmacy residents, including program structure, strengths and weaknesses/limitations, resident perceptions as captured by a postprogram survey, generalizability to other institutions, and opportunities for future directions. SUMMARY: Pharmacy residents face significant pressure, workload, and stressors that put them at risk for burnout and depression. While resiliency has been a major area of focus to help combat these risks for healthcare professionals, little has been published regarding formal, structured resiliency training in pharmacy, especially in pharmacy residency programs. American Society of Health-System Pharmacists (ASHP) residency standards recommend that programs consider education related to burnout prevention and that mitigation strategies be provided to residents and other pharmacy personnel, but no formal pharmacy-specific programs or strategies have been established. We implemented a 12-month PRRP for PGY1 and PGY2 pharmacy residents and conducted a postprogram survey to assess resident perceptions and to identify areas for growth. CONCLUSION: Implementation of a PRRP was feasible and could be replicated at other institutions. Residents in our program reported a high level of satisfaction, skills gained, and positive attributes of the addition of the PRRP. Some notable factors contributing to success included the program's longitudinal nature, use of a nonpharmacy facilitator, and impactful content from an established resiliency skills curriculum.


Asunto(s)
Educación de Postgrado en Farmacia , Internado y Residencia , Residencias en Farmacia , Estudiantes de Farmacia , Curriculum , Humanos , Farmacéuticos
13.
Elife ; 112022 04 11.
Artículo en Inglés | MEDLINE | ID: mdl-35404237

RESUMEN

B-cell activation and immune synapse (IS) formation with membrane-bound antigens are actin-dependent processes that scale positively with the strength of antigen-induced signals. Importantly, ligating the B-cell integrin, LFA-1, with ICAM-1 promotes IS formation when antigen is limiting. Whether the actin cytoskeleton plays a specific role in integrin-dependent IS formation is unknown. Here, we show using super-resolution imaging of mouse primary B cells that LFA-1:ICAM-1 interactions promote the formation of an actomyosin network that dominates the B-cell IS. This network is created by the formin mDia1, organized into concentric, contractile arcs by myosin 2A, and flows inward at the same rate as B-cell receptor (BCR):antigen clusters. Consistently, individual BCR microclusters are swept inward by individual actomyosin arcs. Under conditions where integrin is required for synapse formation, inhibiting myosin impairs synapse formation, as evidenced by reduced antigen centralization, diminished BCR signaling, and defective signaling protein distribution at the synapse. Together, these results argue that a contractile actomyosin arc network plays a key role in the mechanism by which LFA-1 co-stimulation promotes B-cell activation and IS formation.


The immune system has the ability to recognize a vast array of infections and trigger rapid responses. This defense mechanism is mediated in part by B cells which make antibodies that can neutralize or destroy specific disease-causing agents. When pathogens (such as bacteria or viruses) invade the body, a specialized immune cell called an 'antigen presenting cell' holds it in place and presents it to the B cell to examine. Receptors on the surface of the B cell then bind to the infectious agent and launch the B cell into action, triggering the antibody response needed to remove the pathogen. This process relies on B cells and antigen presenting cells making a close connection called an immune synapse, which has a bulls-eye pattern with the receptor in the middle surrounded by sticky proteins called adhesion molecules. A network of actin filaments coating the inside of the B cell are responsible for arranging the proteins into this bulls-eye shape. Once fully formed, the synapse initiates the production of antibodies and helps B cells to make stronger versions of these defensive proteins. So far, most studies have focused on the role the receptor plays in B cell activation. However, when there are only small amounts of the pathogen available, these receptors bind to the antigen presenting cell very weakly. When this happens, adhesion molecules have been shown to step in and promote the formation of the mature synapse needed for B cell activation. But it is not fully understood how adhesion molecules do this. To investigate, Wang et al. looked at mouse B cells using super resolution microscopes. This revealed that when B cells receive signals through both their receptors and their adhesion molecules, they rearrange their actin into a circular structure composed of arc shapes. Motors on the actin arcs then contract the structure inwards, pushing the B cell receptors into the classic bullseye pattern. This only happened when adhesion molecules were present and signals through the B cell receptors were weak. These findings suggest that adhesion molecules help form immune synapses and activate B cells by modifying the actin network so it can drive the re-patterning of receptor proteins. B cells are responsible for the long-term immunity provided by vaccines. Thus, it is possible that the findings of Wang et al. could be harnessed to create vaccines that trigger a stronger antibody response.


Asunto(s)
Actomiosina , Linfocitos B , Sinapsis Inmunológicas , Antígeno-1 Asociado a Función de Linfocito , Citoesqueleto de Actina/metabolismo , Actinas/metabolismo , Actomiosina/metabolismo , Animales , Linfocitos B/inmunología , Molécula 1 de Adhesión Intercelular/metabolismo , Antígeno-1 Asociado a Función de Linfocito/metabolismo , Ratones , Miosinas/metabolismo , Receptores de Antígenos de Linfocitos B/metabolismo
14.
J Intensive Care Med ; 37(8): 998-1004, 2022 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-34632845

RESUMEN

Although research supports the minimization of sedation in mechanically ventilated patients, many patients with severe acute respiratory distress syndrome (ARDS) receive prolonged opioid and sedative infusions. ICU teams face the challenge of weaning these medications, balancing the risks of sedation with the potential to precipitate withdrawal symptoms. In this article, we use a clinical case to discuss our approach to weaning analgosedation in patients recovering from long-term mechanical ventilation. We believe that a protocolized, multimodal weaning strategy implemented by a multidisciplinary care team is required to reduce potential harm from both under- and over-sedation. At present, there is no strong randomized clinical trial evidence to support a particular weaning strategy in adult ICU patients, but appraisal of the existing literature in adults and children can guide decision-making to enhance the recovery of these patients.


Asunto(s)
Síndrome de Dificultad Respiratoria , Síndrome de Abstinencia a Sustancias , Adulto , Analgésicos Opioides , Niño , Humanos , Hipnóticos y Sedantes , Respiración Artificial , Síndrome de Dificultad Respiratoria/terapia , Desconexión del Ventilador
15.
Sci Adv ; 7(38): eabg6908, 2021 Sep 17.
Artículo en Inglés | MEDLINE | ID: mdl-34524844

RESUMEN

Genomic instability is a hallmark of human cancer; yet the underlying mechanisms remain poorly understood. Here, we report that the cytoplasmic unconventional Myosin X (MYO10) regulates genome stability, through which it mediates inflammation in cancer. MYO10 is an unstable protein that undergoes ubiquitin-conjugating enzyme H7 (UbcH7)/ß-transducin repeat containing protein 1 (ß-TrCP1)­dependent degradation. MYO10 is upregulated in both human and mouse tumors and its expression level predisposes tumor progression and response to immune therapy. Overexpressing MYO10 increased genomic instability, elevated the cyclic GMP-AMP synthase (cGAS)/stimulator of interferon genes (STING)­dependent inflammatory response, and accelerated tumor growth in mice. Conversely, depletion of MYO10 ameliorated genomic instability and reduced the inflammation signaling. Further, inhibiting inflammation or disrupting Myo10 significantly suppressed the growth of both human and mouse breast tumors in mice. Our data suggest that MYO10 promotes tumor progression through inducing genomic instability, which, in turn, creates an immunogenic environment for immune checkpoint blockades.

16.
Elife ; 102021 09 14.
Artículo en Inglés | MEDLINE | ID: mdl-34519272

RESUMEN

Skeletal muscle fibers are multinucleated cellular giants formed by the fusion of mononuclear myoblasts. Several molecules involved in myoblast fusion have been discovered, and finger-like projections coincident with myoblast fusion have also been implicated in the fusion process. The role of these cellular projections in muscle cell fusion was investigated herein. We demonstrate that these projections are filopodia generated by class X myosin (Myo10), an unconventional myosin motor protein specialized for filopodia. We further show that Myo10 is highly expressed by differentiating myoblasts, and Myo10 ablation inhibits both filopodia formation and myoblast fusion in vitro. In vivo, Myo10 labels regenerating muscle fibers associated with Duchenne muscular dystrophy and acute muscle injury. In mice, conditional loss of Myo10 from muscle-resident stem cells, known as satellite cells, severely impairs postnatal muscle regeneration. Furthermore, the muscle fusion proteins Myomaker and Myomixer are detected in myoblast filopodia. These data demonstrate that Myo10-driven filopodia facilitate multinucleated mammalian muscle formation.


Asunto(s)
Fibras Musculares Esqueléticas/metabolismo , Distrofia Muscular de Duchenne/metabolismo , Mioblastos Esqueléticos/metabolismo , Miosinas/metabolismo , Seudópodos/metabolismo , Animales , Diferenciación Celular , Fusión Celular , Línea Celular , Proliferación Celular , Modelos Animales de Enfermedad , Humanos , Proteínas de la Membrana/genética , Proteínas de la Membrana/metabolismo , Ratones Endogámicos C57BL , Ratones Endogámicos mdx , Ratones Noqueados , Desarrollo de Músculos , Fibras Musculares Esqueléticas/patología , Proteínas Musculares/genética , Proteínas Musculares/metabolismo , Distrofia Muscular de Duchenne/genética , Distrofia Muscular de Duchenne/patología , Mioblastos Esqueléticos/patología , Miosinas/genética , Seudópodos/genética , Regeneración , Células Satélite del Músculo Esquelético/metabolismo , Células Satélite del Músculo Esquelético/patología , Factores de Tiempo
17.
Arch Osteoporos ; 16(1): 117, 2021 08 02.
Artículo en Inglés | MEDLINE | ID: mdl-34337687

RESUMEN

We evaluated the association of bone fracture with mortality among persons with HIV, controlling for sociodemographic, behavioral, and clinical factors. Incident fracture was associated with 48% greater risk of all-cause mortality, underscoring the need for bone mineral density screening and fracture prevention. PURPOSE/INTRODUCTION: Low bone mineral density (BMD) and fracture are more common among persons with HIV (PWH) than those without HIV infection. We evaluated the association of bone fracture with mortality among PWH, controlling for sociodemographic, behavioral, and clinical factors. METHODS: We analyzed data from HIV Outpatient Study (HOPS) participants seen at nine US HIV clinics during January 1, 2000, through September 30, 2017. Incident fracture rates and post-fracture mortality were compared across four calendar periods. Cox proportional hazards analyses determined factors associated with all-cause mortality among all participants and those with incident fracture. RESULTS: Among 6763 HOPS participants, 504 (7.5%) had incident fracture (median age = 47 years) and 719 (10.6%) died. Of fractures, 135 (26.8%) were major osteoporotic (hip/pelvis, wrist, spine, arm/shoulder). During observation, 27 participants with major osteoporotic fractures died (crude mortality 2.97/100 person-years [PY]), and 48 with other site fractures died (crude mortality 2.51/100 PY). Post-fracture, age- and sex-adjusted all-cause mortality rates per 100 PY decreased from 8.5 during 2000-2004 to 1.9 during 2013-2017 (P<0.001 for trend). In multivariable analysis, incident fracture was significantly associated with all-cause mortality (Hazard Ratio 1.48, 95% confidence interval 1.15-1.91). Among 504 participants followed post-fracture, pulmonary, kidney, and cardiovascular disease, hepatitis C virus co-infection, and non-AIDS cancer, remained independently associated with all-cause mortality. CONCLUSIONS: Incident fracture was associated with 48% greater risk of all-cause mortality among US PWH in care, underscoring the need for BMD screening and fracture prevention. Although fracture rates among PWH increased during follow-up, post-fracture death rates decreased, likely reflecting advances in HIV care.


Asunto(s)
Infecciones por VIH , Fracturas de Cadera , Fracturas Osteoporóticas , Densidad Ósea , Estudios de Cohortes , Humanos , Persona de Mediana Edad , Fracturas Osteoporóticas/epidemiología , Pacientes Ambulatorios , Factores de Riesgo
18.
Am J Emerg Med ; 48: 255-260, 2021 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-34004470

RESUMEN

PURPOSE: To determine if aztreonam as initial empiric treatment of adult septic shock is associated with increased mortality compared to the use of anti-pseudomonal beta-lactam agents. METHODS: This was a multicenter, retrospective cohort study of 582 adult emergency department patients admitted to 12 acute care facilities within a single health system from January 2014 to December 2017 with septic shock receiving either aztreonam or an anti-pseudomonal beta-lactam for empiric treatment and discharged with an infection-related ICD-9 or ICD-10 code. The primary endpoint was in-hospital mortality. RESULTS: Initial exposure to aztreonam was associated with increased hospital mortality compared to treatment with an anti-pseudomonal beta-lactam agent (22.7% vs. 12.9%, OR = 1.98, 95% CI: 1.27-3.11). When adjusted for APACHE II score, the treatment group effect on mortality remained statistically significant (OR = 1.74, 95% CI: 1.08-2.80). Aztreonam use was also associated with increased utilization of aminoglycosides (28.9% vs. 12.4%, p < 0.0001) and fluoroquinolones (50.5% vs. 25.8%, p < 0.01). There was no difference in hospital or intensive care unit length of stay in surviving patients between the two groups. CONCLUSIONS: Compared to anti-pseudomonal beta-lactams, empiric treatment with aztreonam is associated with increased mortality and greater antibiotic exposure among patients with acute septic shock. These findings suggest that treatment with anti-pseudomonal beta-lactams should be prioritized over allergy avoidance whenever feasible.


Asunto(s)
Antibacterianos/uso terapéutico , Aztreonam/uso terapéutico , Cefepima/uso terapéutico , Mortalidad Hospitalaria , Combinación Piperacilina y Tazobactam/uso terapéutico , Choque Séptico/tratamiento farmacológico , beta-Lactamas/uso terapéutico , APACHE , Anciano , Anciano de 80 o más Años , Aminoglicósidos/uso terapéutico , Estudios de Cohortes , Hipersensibilidad a las Drogas/epidemiología , Femenino , Fluoroquinolonas/uso terapéutico , Humanos , Unidades de Cuidados Intensivos , Tiempo de Internación/estadística & datos numéricos , Masculino , Meropenem , Persona de Mediana Edad , Estudios Retrospectivos , Factores de Riesgo
19.
Methods Mol Biol ; 2304: 111-130, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34028713

RESUMEN

The Zeiss Airyscan microscope transforms a diffraction-limited, point-scanning confocal microscope into a super-resolution microscope using a specialized 32-channel Airyscan detector. By improving resolution twofold and signal-to-noise ratio eightfold relative to conventional confocal microscopes while retaining confocal functionality, the Airyscan microscope has become a very popular super-resolution imaging tool for cell biologists. In this chapter, we describe the fundamentals of Airyscan imaging, with the aim of helping the reader determine the proper acquisition settings for different types of experiments, optimize imaging conditions, and process the raw Airyscan images to obtain final images with the best quality. We also provide some tips, tricks, and best practices for Airyscan imaging. Of note, while our focus is on the Airyscan function of this microscope rather than its conventional confocal function, the Airyscan unit comes as an add-on to the conventional Zeiss laser scanning confocal microscope. This protocol is for the first generation Airyscan Zeiss 800 series microscope.


Asunto(s)
Microscopía Confocal/instrumentación , Humanos , Imagenología Tridimensional , Relación Señal-Ruido , Interfaz Usuario-Computador
20.
FASEB J ; 35(1): e21092, 2021 01.
Artículo en Inglés | MEDLINE | ID: mdl-33378124

RESUMEN

Myosin 18Aα is a myosin 2-like protein containing unique N- and C-terminal protein interaction domains that co-assembles with myosin 2. One protein known to bind to myosin 18Aα is ß-Pix, a guanine nucleotide exchange factor (GEF) for Rac1 and Cdc42 that has been shown to promote dendritic spine maturation by activating the assembly of actin and myosin filaments in spines. Here, we show that myosin 18A⍺ concentrates in the spines of cerebellar Purkinje neurons via co-assembly with myosin 2 and through an actin binding site in its N-terminal extension. miRNA-mediated knockdown of myosin 18A⍺ results in a significant defect in spine maturation that is rescued by an RNAi-immune version of myosin 18A⍺. Importantly, ß-Pix co-localizes with myosin 18A⍺ in spines, and its spine localization is lost upon myosin 18A⍺ knockdown or when its myosin 18A⍺ binding site is deleted. Finally, we show that the spines of myosin 18A⍺ knockdown Purkinje neurons contain significantly less F-actin and myosin 2. Together, these data argue that mixed filaments of myosin 2 and myosin 18A⍺ form a complex with ß-Pix in Purkinje neuron spines that promotes spine maturation by enhancing the assembly of actin and myosin filaments downstream of ß-Pix's GEF activity.


Asunto(s)
Espinas Dendríticas/metabolismo , Miosinas/metabolismo , Células de Purkinje/metabolismo , Factores de Intercambio de Guanina Nucleótido Rho/metabolismo , Animales , Espinas Dendríticas/genética , Eliminación de Gen , Ratones , Miosina Tipo II/genética , Miosina Tipo II/metabolismo , Miosinas/genética , Factores de Intercambio de Guanina Nucleótido Rho/genética
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