Publications by authors named "Ryan Morris"

Article Synopsis
  • The extracellular matrix in biofilms helps protect and support the bacteria community.
  • TasA is a protein that can form different types of fibrils, which are important for building the structure of biofilms.
  • By studying changes to one specific part of TasA, scientists discovered that this part is crucial for forming organized biofilms and that just making fibers isn't enough for a strong structure.
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We use a microfluidic ecology which generates non-uniform phage concentration gradients and micro-ecological niches to reveal the importance of time, spatial population structure and collective population dynamics in the de evolution of T4r bacteriophage resistant motile . An insensitive bacterial population against T4r phage occurs within 20 hours in small interconnected population niches created by a gradient of phage virions, driven by evolution in transient biofilm patches. Sequencing of the resistant bacteria reveals mutations at the receptor site of bacteriophage T4r as expected but also in genes associated with biofilm formation and surface adhesion, supporting the hypothesis that evolution within transient biofilms drives phage resistance.

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Microbial growth often occurs within multicellular communities called biofilms, where cells are enveloped by a protective extracellular matrix. serves as a model organism for biofilm research and produces two crucial secreted proteins, BslA and TasA, vital for biofilm matrix formation. BslA exhibits surface-active properties, spontaneously self-assembling at hydrophobic/hydrophilic interfaces to form an elastic protein film, which renders biofilm surfaces water-repellent.

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The soil bacterium is a model organism to investigate the formation of biofilms, the predominant form of microbial life. The secreted protein BslA self-assembles at the surface of the biofilm to give the biofilm its characteristic hydrophobicity. To understand the mechanism of BslA self-assembly at interfaces, here we built a molecular model based on the previous BslA crystal structure and the crystal structure of the BslA paralogue YweA that we determined.

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Many proteins that self-assemble into amyloid and amyloid-like fibers can adopt diverse polymorphic forms. These forms have been observed both in vitro and in vivo and can arise through variations in the steric-zipper interactions between β-sheets, variations in the arrangements between protofilaments, and differences in the number of protofilaments that make up a given fiber class. Different polymorphs arising from the same precursor molecule not only exhibit different levels of toxicity, but importantly can contribute to different disease conditions.

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A hallmark of microbial biofilms is the self-production of an extracellular molecular matrix that encases the resident cells. The matrix provides protection from the environment, while spatial heterogeneity of gene expression influences the structural morphology and colony spreading dynamics. Bacillus subtilis is a model bacterial system used to uncover the regulatory pathways and key building blocks required for biofilm growth and development.

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COVID-19 infection has been linked to worsening or de novo lower urinary tract symptoms and transient serum prostate-specific antigen rise in patients with benign prostatic hyperplasia. This pilot study aimed to examine prostatic tissue for evidence for direct involvement with the COVID-19 (SARS-CoV-2) infection. Fourteen patients with previous documented COVID-19 infection who underwent prostate enucleation had their prostate specimens examined for COVID-19 RNA.

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Pelvic fracture is a common cause of traumatic injury of the bladder and posterior urethra; however, isolated corporal injury is rare. We present a case of pelvic fracture associated with proximal injury of the penile corpora cavernosa sparing the urethra and bladder, together with a literature review of erectile dysfunction post-pelvic fracture.

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Article Synopsis
  • PIP5K1α is identified as a potential drug target for castration-resistant prostate cancer (CRPC) because it influences cancer growth and survival through the PI3K/AKT signaling pathway.
  • Using siRNA and the small molecule inhibitor ISA-2011B, researchers found that reducing PIP5K1α levels leads to decreased growth and invasion of CRPC cells.
  • The N-terminal domain of PIP5K1α is crucial for its function and stability, impacting the activity of the androgen receptor and related genes, indicating that targeting this kinase could be effective for CRPC treatment.
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Spontaneous urethral laceration in the female without associated external trauma is an exceedingly rare phenomenon. Most cases are related to childbirth or the presence of a concomitant pelvic fracture or penetrating injury. Herein, we present a novel case of spontaneous urethral laceration in a female which happened to occur during an acute flare of her previously diagnosed ulcerative colitis.

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Introduction: This study aimed to test the accuracy of the 3-dimensional (3D) digital dental models generated by the Dental Monitoring (DM) smartphone application in both photograph and video modes over successive DM examinations in comparison with 3D digital dental models generated by the iTero Element intraoral scanner.

Methods: Ten typodonts with setups of class I malocclusion and comparable severity of anterior crowding were used in the study. iTero Element scans along with DM examination in photograph and video modes were performed before tooth movement and after each set of 10 Invisalign aligners for each typodont.

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Sickle cell disease (SCD)-induced urinary concentration defect has been proposed as caused by impaired ability of the occluded vasa recta due to red blood cell sickling to serve as countercurrent exchangers and renal tubules to absorb water and solutes. However, the exact molecular mechanisms remain largely unknown. The present studies were undertaken to determine the effects of SCD on vasopressin, aquaporin2 (AQP2), urea transporter A1 (UTA1), Na-K-Cl co-transporter 2 (NKCC2), epithelial Na channels (ENaC), aquaporin1 (AQP1), nuclear factor of activated T cells 5 (NFAT5) and Src homology region-2 domain-containing phosphatase-1 (SHP-1), an important regulator of NFAT5, in the Berkeley SCD mouse kidney medulla.

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: Blast-related brain and ocular injuries can lead to acute and chronic visual dysfunction. The chronic visual consequences of blast exposure and its progression remain unclear. The goal of this study is to analyze ocular functional response to four levels of blast exposure and identify a threshold of blast exposure leading to acute and chronic visual dysfunction.

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Langmuir-Blodgett (LB) technique, which involves the formation of interfacial layers and the subsequent transfer onto a solid substrate, provides one of the most versatile means to characterize the adsorption, self-assembly, and rheological properties of interfacial colloids. In this review, we summarized the relevant studies on anisotropic colloids, which exhibit a richer self-assembly potential than their spherical counterparts. Hard particles with different shape and aspect ratio induce interfacial distortions when trapped at a liquid interface; the ensuing capillary interactions can drive the formation of complex two-dimensional (2D) structures with interesting properties.

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Bacteria under external stress can reveal unexpected emergent phenotypes. We show that the intensely studied bacterium can transform into long, highly motile helical filaments poized at a torsional buckling criticality when exposed to minimum inhibitory concentrations of several antibiotics. While the highly motile helices are physically either right- or left-handed, the motile helices always rotate with a right-handed angular velocity [Formula: see text], which points in the same direction as the translational velocity [Formula: see text] of the helix.

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Coal seam gas (CSG) extraction generates large volumes of coproduced water. Injection of the excess water into deep aquifers is often the most sustainable management option. However, such injection risks undesired sediment-water interactions that mobilize metal(loid)s in the receiving aquifer.

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Bacterial biofilms are communities of microbial cells encased within a self-produced polymeric matrix. In the Bacillus subtilis biofilm matrix, the extracellular fibres of TasA are essential. Here, a recombinant expression system allows interrogation of TasA, revealing that monomeric and fibre forms of TasA have identical secondary structure, suggesting that fibrous TasA is a linear assembly of globular units.

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Article Synopsis
  • BslA is a protein from Bacillus subtilis that forms a hydrophobic film, making biofilms water-repellent.
  • Researchers studied three similar proteins (orthologues) from other Bacillus species and a paralogue from B. subtilis called YweA.
  • The study showed that the three orthologous proteins can replace BslA and provide some protection, while YweA cannot, linking their effectiveness to their physical properties.
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Biofilms are communities of microbial cells that are encapsulated within a self-produced polymeric matrix. The matrix is critical to the success of biofilms in diverse habitats; however, many details of the composition, structure, and function remain enigmatic. Biofilms formed by the Gram-positive bacterium depend on the production of the secreted film-forming protein BslA.

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Ranaspumin-2 (Rsn-2) is a surfactant protein found in the foam nests of the túngara frog. Previous experimental work has led to a proposed model of adsorption that involves an unusual clam-shell-like unhinging of the protein at an interface. Interestingly, there is no concomitant denaturation of the secondary structural elements of Rsn-2 with the large-scale transformation of its tertiary structure.

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Anterior cruciate ligament reconstructions are commonly performed in an attempt to return an athlete to sports activities. Accelerated rehabilitation has made recovery for surgery more predictable and shortened the timeline for return to play. Despite success with and advancements in anterior cruciate ligament reconstructions, some athletes still fail to return to play.

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Intrinsically interfacially active proteins have garnered considerable interest recently owing to their potential use in a range of materials applications. Notably, the fungal hydrophobins are known to form robust and well-organized surface layers with high mechanical strength. Recently, it was shown that the bacterial biofilm protein BslA also forms highly elastic surface layers at interfaces.

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Article Synopsis
  • Eukaryotic cells store lipids, like cholesterol/sterol esters (SEs) and triacylglycerols (TAGs), in structures called lipid droplets, which develop from the endoplasmic reticulum (ER).
  • * The study found that SE-enriched lipid droplets mostly form at the cell tips, far from the nucleus, while TAG-enriched droplets assemble around the nucleus, influenced by specific metabolic processes.
  • * The findings suggest that the model of lipid droplet formation, which treated SEs and TAGs as interchangeable, may need revision to account for their distinct sources and behaviors within the cell.
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Engineering whole organs from porcine decellularized extracellular matrix and human cells may lead to a plentiful source of implantable organs. Decontaminating the porcine decellularized extracellular matrix scaffolds is an essential step prior to introducing human cells. However, decontamination of whole porcine kidneys is a major challenge because the decontamination agent or irradiation needs to diffuse deep into the structure to eliminate all microbial contamination while minimizing damage to the structure and composition of the decellularized extracellular matrix.

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BslA is an amphiphilic protein that forms a highly hydrophobic coat around Bacillus subtilis biofilms, shielding the bacterial community from external aqueous solution. It has a unique structure featuring a distinct partition between hydrophilic and hydrophobic surfaces. This surface property is reminiscent of synthesized Janus colloids.

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