keyword
https://read.qxmd.com/read/38598645/the-n-terminal-domains-of-nlr-immune-receptors-exhibit-structural-and-functional-similarities-across-divergent-plant-lineages
#21
JOURNAL ARTICLE
Khong-Sam Chia, Jiorgos Kourelis, Albin Teulet, Martin Vickers, Toshiyuki Sakai, Joseph F Walker, Sebastian Schornack, Sophien Kamoun, Philip Carella
Nucleotide-binding domain and leucine-rich repeat (NLR) proteins are a prominent class of intracellular immune receptors in plants. However, our understanding of plant NLR structure and function is limited to the evolutionarily young flowering plant clade. Here, we describe an extended spectrum of NLR diversity across divergent plant lineages and demonstrate the structural and functional similarities of N-terminal domains that trigger immune responses. We show that the broadly distributed coiled-coil (CC) and toll/interleukin-1 receptor (TIR) domain families of non-flowering plants retain immune-related functions through trans-lineage activation of cell death in the angiosperm Nicotiana benthamiana...
April 10, 2024: Plant Cell
https://read.qxmd.com/read/38589930/swine-acute-diarrhea-syndrome-coronavirus-nucleocapsid-protein-antagonizes-the-ifn-response-through-inhibiting-trim25-oligomerization-and-functional-activation-of-rig-i-trim25
#22
JOURNAL ARTICLE
Jiyu Zhang, Hongyan Shi, Liaoyuan Zhang, Tingshuai Feng, Jianfei Chen, Xin Zhang, Zhaoyang Ji, Zhaoyang Jing, Xiaoyuan Zhu, Dakai Liu, Xiaoman Yang, Miaomiao Zeng, Da Shi, Li Feng
Swine acute diarrhea syndrome coronavirus (SADS-CoV), an emerging Alpha-coronavirus, brings huge economic loss in swine industry. Interferons (IFNs) participate in a frontline antiviral defense mechanism triggering the activation of numerous downstream antiviral genes. Here, we demonstrated that TRIM25 overexpression significantly inhibited SADS-CoV replication, whereas TRIM25 deficiency markedly increased viral yield. We found that SADS-CoV N protein suppressed interferon-beta (IFN-β) production induced by Sendai virus (SeV) or poly(I:C)...
April 8, 2024: Veterinary Research
https://read.qxmd.com/read/38589608/structure-of-adenylyl-cyclase-5-in-complex-with-g%C3%AE-%C3%AE-offers-insights-into-adcy5-related-dyskinesia
#23
JOURNAL ARTICLE
Yu-Chen Yen, Yong Li, Chun-Liang Chen, Thomas Klose, Val J Watts, Carmen W Dessauer, John J G Tesmer
The nine different membrane-anchored adenylyl cyclase isoforms (AC1-9) in mammals are stimulated by the heterotrimeric G protein, Gαs , but their response to Gβγ regulation is isoform specific. In the present study, we report cryo-electron microscope structures of ligand-free AC5 in complex with Gβγ and a dimeric form of AC5 that could be involved in its regulation. Gβγ binds to a coiled-coil domain that links the AC transmembrane region to its catalytic core as well as to a region (C1b ) that is known to be a hub for isoform-specific regulation...
April 8, 2024: Nature Structural & Molecular Biology
https://read.qxmd.com/read/38588809/ykt6-functionally-overlaps-with-vacuolar-and-exocytic-r-snares-in-the-yeast-saccharomyces-cerevisiae
#24
JOURNAL ARTICLE
Hayate Watanabe, Shingo Urano, Nozomi Kikuchi, Yurika Kubo, Ayumi Kikuchi, Katsuya Gomi, Takahiro Shintani
The soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complex forms a 4-helix coiled-coil bundle consisting of 16 layers of interacting side chains upon membrane fusion. The central layer (layer 0) is highly conserved and comprises three glutamines (Q) and one arginine (R), and thus SNAREs are classified into Qa-, Qb-, Qc-, and R-SNAREs. Homotypic vacuolar fusion in Saccharomyces cerevisiae requires the SNAREs Vam3 (Qa), Vti1 (Qb), Vam7 (Qc), and Nyv1 (R). However, the yeast strain lacking NYV1 (nyv1Δ) shows no vacuole fragmentation, whereas the vam3Δ and vam7Δ strains display fragmented vacuoles...
April 6, 2024: Journal of Biological Chemistry
https://read.qxmd.com/read/38587113/post-translational-modifications-of-vertebrate-striated-muscle-myosin-heavy-chains
#25
REVIEW
Paula Nieto Morales, Arianna N Coons, Amelia J Koopman, Sonu Patel, P Bryant Chase, Michelle S Parvatiyar, Jose R Pinto
Post-translational modifications (PTMs) play a crucial role in regulating the function of many sarcomeric proteins, including myosin. Myosins comprise a family of motor proteins that play fundamental roles in cell motility in general and muscle contraction in particular. A myosin molecule consists of two myosin heavy chains (MyHCs) and two pairs of myosin light chains (MLCs); two MLCs are associated with the neck region of each MyHC's N-terminal head domain, while the two MyHC C-terminal tails form a coiled-coil that polymerizes with other MyHCs to form the thick filament backbone...
April 8, 2024: Cytoskeleton
https://read.qxmd.com/read/38586031/atomic-structures-of-a-bacteriocin-targeting-gram-positive-bacteria
#26
Z Hong Zhou, Xiaoying Cai, Yao He, Iris Yu, Anthony Imani, Dean Scholl, Jeff Miller
Due to envelope differences between Gram-positive and Gram-negative bacteria 1 , engineering precision bactericidal contractile nanomachines 2 requires atomic-level understanding of their structures; however, only those killing a Gram-negative bacterium are currently known 3,4 . Here, we report the atomic structures of an engineered diffocin, a contractile syringe-like molecular machine that kills the Gram-positive bacterium Clostridioides difficile. Captured in one pre-contraction and two post-contraction states, each structure fashions six proteins in the bacteria-targeting baseplate, two proteins in the energy-storing trunk, and a collar protein linking the sheath with the membrane-penetrating tube...
March 27, 2024: Research Square
https://read.qxmd.com/read/38586009/the-molecular-architecture-of-the-nuclear-basket
#27
Digvijay Singh, Neelesh Soni, Joshua Hutchings, Ignacia Echeverria, Farhaz Shaikh, Madeleine Duquette, Sergey Suslov, Zhixun Li, Trevor van Eeuwen, Kelly Molloy, Yi Shi, Junjie Wang, Qiang Guo, Brian T Chait, Javier Fernandez-Martinez, Michael P Rout, Andrej Sali, Elizabeth Villa
The nuclear pore complex (NPC) is the sole mediator of nucle-ocytoplasmic transport. Despite great advances in understanding its conserved core architecture, the peripheral regions can exhibit considerable variation within and between species. One such structure is the cage-like nuclear basket. Despite its crucial roles in mRNA surveillance and chromatin organization, an architectural understanding has remained elusive. Using in-cell cryo-electron tomography and subtomogram analysis, we explored the NPC's structural variations and the nuclear basket across fungi (yeast; S...
March 28, 2024: bioRxiv
https://read.qxmd.com/read/38585751/the-evolutionary-origins-and-ancestral-features-of-septins
#28
Samed Delic, Brent Shuman, Shoken Lee, Shirin Bahmanyar, Michelle Momany, Masayuki Onishi
Septins are a family of membrane-associated cytoskeletal GTPases that play crucial roles in various cellular processes, such as cell division, phagocytosis, and organelle fission. Despite their importance, the evolutionary origins and ancestral function of septins remain unclear. In opisthokonts, septins form five distinct groups of orthologs, with subunits from multiple groups assembling into heteropolymers, thus supporting their diverse molecular functions. Recent studies have revealed that septins are also conserved in algae and protists, indicating an ancient origin from the last eukaryotic common ancestor...
March 27, 2024: bioRxiv
https://read.qxmd.com/read/38580662/statins-improve-cardiac-endothelial-function-to-prevent-heart-failure-with-preserved-ejection-fraction-through-upregulating-circrna-rbck1
#29
JOURNAL ARTICLE
Bin Li, Wen-Wu Bai, Tao Guo, Zhen-Yu Tang, Xue-Jiao Jing, Ti-Chao Shan, Sen Yin, Ying Li, Fu Wang, Mo-Li Zhu, Jun-Xiu Lu, Yong-Ping Bai, Bo Dong, Peng Li, Shuang-Xi Wang
Heart failure with preserved ejection fraction (HFpEF) is associated with endothelial dysfunction. We have previously reported that statins prevent endothelial dysfunction through inhibition of microRNA-133a (miR-133a). This study is to investigate the effects and the underlying mechanisms of statins on HFpEF. Here, we show that statins upregulate the expression of a circular RNA (circRNA-RBCK1) which is co-transcripted with the ring-B-box-coiled-coil protein interacting with protein kinase C-1 (RBCK1) gene...
April 5, 2024: Nature Communications
https://read.qxmd.com/read/38573316/rock-and-the-actomyosin-network-control-biomineral-growth-and-morphology-during-sea-urchin-skeletogenesis
#30
JOURNAL ARTICLE
Eman Hijaze, Tsvia Gildor, Ronald Seidel, Majed Layous, Mark Winter, Luca Bertinetti, Yael Politi, Smadar Ben-Tabou de-Leon
Biomineralization had apparently evolved independently in different phyla, using distinct minerals, organic scaffolds, and gene regulatory networks (GRNs). However, diverse eukaryotes from unicellular organisms, through echinoderms to vertebrates, use the actomyosin network during biomineralization. Specifically, the actomyosin remodeling protein, Rho-associated coiled-coil kinase (ROCK) regulates cell differentiation and gene expression in vertebrates' biomineralizing cells, yet, little is known on ROCK's role in invertebrates' biomineralization...
April 4, 2024: ELife
https://read.qxmd.com/read/38567765/the-lrs14-family-of-dna-binding-proteins-as-nucleoid-associated-proteins-in-the-crenarchaeal-order-sulfolobales
#31
REVIEW
Veerke De Kock, Eveline Peeters, Rani Baes
Organization of archaeal chromatin combines bacterial, eukaryotic, and unique characteristics. Many archaeal lineages harbor a wide diversity of small and highly expressed nucleoid-associated proteins, which are involved in DNA structuring. In Sulfolobales, representing model organisms within the Crenarchaeota, Sul7d, Cren7, Sul10a, and Sul12a are well-characterized nucleoid-associated proteins. Here, we combine evidence that the Lrs14 family of DNA binders is part of the repertoire of nucleoid-associated proteins in Sulfolobales...
April 3, 2024: Molecular Microbiology
https://read.qxmd.com/read/38567550/impact-of-glycan-nature-on-structure-and-viscoelastic-properties-of-glycopeptide-hydrogels
#32
JOURNAL ARTICLE
Jonas Proksch, Marlene C S Dal Colle, Frederick Heinz, Robert F Schmidt, Jacqueline Gottwald, Martina Delbianco, Bettina G Keller, Michael Gradzielski, Ulrike Alexiev, Beate Koksch
Mucus is a complex biological hydrogel that acts as a barrier for almost everything entering or exiting the body. It is therefore of emerging interest for biomedical and pharmaceutical applications. Besides water, the most abundant components are the large and densely glycosylated mucins, glycoproteins of up to 20 MDa and carbohydrate content of up to 80 wt%. Here, we designed and explored a library of glycosylated peptides to deconstruct the complexity of mucus. Using the well-characterized hFF03 coiled-coil system as a hydrogel-forming peptide scaffold, we systematically probed the contribution of single glycans to the secondary structure as well as the formation and viscoelastic properties of the resulting hydrogels...
April 3, 2024: Journal of Peptide Science
https://read.qxmd.com/read/38565675/deletion-of-podocyte-rho-associated-coiled-coil-containing-protein-kinase-2-protects-mice-from-focal-segmental-glomerulosclerosis
#33
JOURNAL ARTICLE
Keiichiro Matoba, Yosuke Nagai, Kensuke Sekiguchi, Shinji Ohashi, Etsuko Mitsuyoshi, Masayuki Shimoda, Toshiaki Tachibana, Daiji Kawanami, Tamotsu Yokota, Kazunori Utsunomiya, Rimei Nishimura
Focal segmental glomerulosclerosis (FSGS) shares podocyte damage as an essential pathological finding. Several mechanisms underlying podocyte injury have been proposed, but many important questions remain. Rho-associated, coiled-coil-containing protein kinase 2 (ROCK2) is a serine/threonine kinase responsible for a wide array of cellular functions. We found that ROCK2 is activated in podocytes of adriamycin (ADR)-induced FSGS mice and cultured podocytes stimulated with ADR. Conditional knockout mice in which the ROCK2 gene was selectively disrupted in podocytes (PR2KO) were resistant to albuminuria, glomerular sclerosis, and podocyte damage induced by ADR injection...
April 2, 2024: Communications Biology
https://read.qxmd.com/read/38562617/pathophysiology-of-human-hearing-loss-associated-with-variants-in-myosins
#34
REVIEW
Takushi Miyoshi, Inna A Belyantseva, Mrudhula Sajeevadathan, Thomas B Friedman
Deleterious variants of more than one hundred genes are associated with hearing loss including MYO3A , MYO6 , MYO7A and MYO15A and two conventional myosins MYH9 and MYH14 . Variants of MYO7A also manifest as Usher syndrome associated with dysfunction of the retina and vestibule as well as hearing loss. While the functions of MYH9 and MYH14 in the inner ear are debated, MYO3A, MYO6, MYO7A and MYO15A are expressed in inner ear hair cells along with class-I myosin MYO1C and are essential for developing and maintaining functional stereocilia on the apical surface of hair cells...
2024: Frontiers in Physiology
https://read.qxmd.com/read/38558978/pick1-links-kibra-and-ampa-receptors-in-coiled-coil-driven-supramolecular-complexes
#35
Xin Shao, Lenora Volk
The human memory-associated protein KIBRA regulates synaptic plasticity and trafficking of AMPA-type glutamate receptors, and is implicated in multiple neuropsychiatric and cognitive disorders. How KIBRA forms complexes with and regulates AMPA receptors remains unclear. Here, we show that KIBRA does not interact directly with the AMPA receptor subunit GluA2, but that PICK1, a key regulator of AMPA receptor trafficking, can serve as a bridge between KIBRA and GluA2. We identified structural determinants of KIBRA-PICK1-AMPAR complexes by investigating interactions and cellular expression patterns of different combinations of KIBRA and PICK1 domain mutants...
March 14, 2024: bioRxiv
https://read.qxmd.com/read/38556084/key-roles-for-phosphorylation-and-the-coiled-coil-domain-in-trim56-mediated-positive-regulation-of-tlr3-trif-dependent-innate-immunity
#36
JOURNAL ARTICLE
Benjamin M Liu, Nan L Li, Ruixue Wang, Xiaofan Li, Z Alex Li, Tony N Marion, Kui Li
Tripartite-motif protein-56 (TRIM56) positively regulates the induction of type I interferon (IFN) response via the TLR3 pathway by enhancing IRF3 activation and depends on its C-terminal residues 621-750 for interacting with the adaptor TRIF. However, the precise underlying mechanism and detailed TRIM56 determinants remain unclear. Herein, we show ectopic expression of murine TRIM56 also enhances TLR3-dependent IFN-β promoter activation, suggesting functional conservation. We found that endogenous TRIM56 and TRIF formed a complex early (0...
March 29, 2024: Journal of Biological Chemistry
https://read.qxmd.com/read/38553476/cell-surface-patching-via-cxcr4-targeted-nanothreads-for-cancer-metastasis-inhibition
#37
JOURNAL ARTICLE
Minglu Zhou, Chendong Liu, Bo Li, Junlin Li, Ping Zhang, Yuan Huang, Lian Li
The binding of therapeutic antagonists to their receptors often fail to translate into adequate manipulation of downstream pathways. To fix this 'bug', here we report a strategy that stitches cell surface 'patches' to promote receptor clustering, thereby synchronizing subsequent mechano-transduction. The "patches" are sewn with two interactable nanothreads. In sequence, Nanothread-1 strings together adjacent receptors while presenting decoy receptors. Nanothread-2 then targets these decoys multivalently, intertwining with Nanothread-1 into a coiled-coil supramolecular network...
March 29, 2024: Nature Communications
https://read.qxmd.com/read/38552623/short-distance-vesicle-transport-via-phase-separation
#38
JOURNAL ARTICLE
Hua Qiu, Xiandeng Wu, Xiaoli Ma, Shulin Li, Qixu Cai, Marcelo Ganzella, Liang Ge, Hong Zhang, Mingjie Zhang
In addition to long-distance molecular motor-mediated transport, cellular vesicles also need to be moved at short distances with defined directions to meet functional needs in subcellular compartments but with unknown mechanisms. Such short-distance vesicle transport does not involve molecular motors. Here, we demonstrate, using synaptic vesicle (SV) transport as a paradigm, that phase separation of synaptic proteins with vesicles can facilitate regulated, directional vesicle transport between different presynaptic bouton sub-compartments...
March 21, 2024: Cell
https://read.qxmd.com/read/38547289/molecular-mechanism-of-dynein-dynactin-complex-assembly-by-lis1
#39
JOURNAL ARTICLE
Kashish Singh, Clinton K Lau, Giulia Manigrasso, José B Gama, Reto Gassmann, Andrew P Carter
Cytoplasmic dynein is a microtubule motor vital for cellular organization and division. It functions as a ~4-megadalton complex containing its cofactor dynactin and a cargo-specific coiled-coil adaptor. However, how dynein and dynactin recognize diverse adaptors, how they interact with each other during complex formation, and the role of critical regulators such as lissencephaly-1 (LIS1) protein (LIS1) remain unclear. In this study, we determined the cryo-electron microscopy structure of dynein-dynactin on microtubules with LIS1 and the lysosomal adaptor JIP3...
March 29, 2024: Science
https://read.qxmd.com/read/38542527/in-silico-description-of-the-direct-inhibition-mechanism-of-endothelial-lipase-by-angptl3
#40
JOURNAL ARTICLE
Linda Montavoci, Omar Ben Mariem, Simona Saporiti, Tommaso Laurenzi, Luca Palazzolo, Alice Federica Ossoli, Uliano Guerrini, Laura Calabresi, Ivano Eberini
Angiopoietin-like protein 3 (ANGPTL3) is a plasmatic protein that plays a crucial role in lipoprotein metabolism by inhibiting the lipoprotein lipase (LPL) and the endothelial lipase (EL) responsible for the hydrolysis of phospholipids on high-density lipoprotein (HDL). Interest in developing new pharmacological therapies aimed at inhibiting ANGPTL3 has been growing due to the hypolipidemic and antiatherogenic profile observed in its absence. The goal of this study was the in silico characterization of the interaction between ANGPTL3 and EL...
March 21, 2024: International Journal of Molecular Sciences
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