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241.
242.
Sergio Porté Agrin Moeini Irene Reche Naeem Shafqat Udo Oppermann Jaume Farrés Xavier Parés 《Cellular and molecular life sciences : CMLS》2011,68(6):1065-1077
Human ζ-crystallin is a Zn2+-lacking medium-chain dehydrogenase/reductase (MDR) included in the quinone oxidoreductase (QOR) family because of its activity
with quinones. In the present work a novel enzymatic activity was characterized: the double bond α,β-hydrogenation of medium-chain
2-alkenals and 3-alkenones. The enzyme is especially active with lipid peroxidation products such as 4-hydroxyhexenal, and
a role in their detoxification is discussed. This specificity is novel in the QOR family, and it is similar to that described
in the distantly related alkenal/one reductase family. Moreover, we report the X-ray structure of ζ-crystallin, which represents
the first structure solved for a tetrameric Zn2+-lacking MDR, and which allowed the identification of the active-site lining residues. Docking simulations suggest a role
for Tyr53 and Tyr59 in catalysis. The kinetics of Tyr53Phe and Tyr59Phe mutants support the implication of Tyr53 in binding/catalysis
of alkenal/one substrates, while Tyr59 is involved in the recognition of 4-OH-alkenals. 相似文献
243.
Jean-Pierre Vilardaga Guillermo Romero Peter A. Friedman Thomas J. Gardella 《Cellular and molecular life sciences : CMLS》2011,68(1):1-13
The parathyroid hormone (PTH) receptor type 1 (PTHR), a G protein-coupled receptor (GPCR), transmits signals to two hormone
systems—PTH, endocrine and homeostatic, and PTH-related peptide (PTHrP), paracrine—to regulate different biological processes.
PTHR responds to these hormonal stimuli by activating heterotrimeric G proteins, such as GS that stimulates cAMP production. It was thought that the PTHR, as for all other GPCRs, is only active and signals through
G proteins on the cell membrane, and internalizes into a cell to be desensitized and eventually degraded or recycled. Recent
studies with cultured cell and animal models reveal a new pathway that involves sustained cAMP signaling from intracellular
domains. Not only do these studies challenge the paradigm that cAMP production triggered by activated GPCRs originates exclusively
at the cell membrane but they also advance a comprehensive model to account for the functional differences between PTH and
PTHrP acting through the same receptor. 相似文献
244.
The skin is our primary shield against microbial pathogens and has evolved innate and adaptive strategies to enhance immunity
in response to injury or microbial insult. The study of antimicrobial peptide (AMP) production in mammalian skin has revealed
several of the elegant strategies that AMPs use to prevent infection. AMPs are inducible by both infection and injury and
protect the host by directly killing pathogens and/or acting as multifunctional effector molecules that trigger cellular responses
to aid in the anti-infective and repair response. Depending on the specific AMP, these molecules can influence cytokine production,
cell migration, cell proliferation, differentiation, angiogenesis and wound healing. Abnormal production of AMPs has been
associated with the pathogenesis of several cutaneous diseases and plays a role in determining a patient’s susceptibility
to pathogens. This review will discuss current research on the regulation and function of AMPs in the skin and in skin disorders. 相似文献
245.
Host defense peptides and proteins are important components of the innate host defense against pathogenic microorganisms.
They target negatively charged bacterial surfaces and disrupt microbial cytoplasmic membranes, which ultimately leads to bacterial
destruction. Throughout evolution, pathogens devised several mechanisms to protect themselves from deleterious damage of host
defense peptides. These strategies include (a) inactivation and cleavage of host defense peptides by production of host defense
binding proteins and proteases, (b) repulsion of the peptides by alteration of pathogen’s surface charge employing modifications
by amino acids or amino sugars of anionic molecules (e.g., teichoic acids, lipid A and phospholipids), (c) alteration of bacterial
membrane fluidity, and (d) expulsion of the peptides using multi drug pumps. Together with bacterial regulatory network(s)
that regulate expression and activity of these mechanisms, they represent attractive targets for development of novel antibacterials. 相似文献
246.
This review describes the properties of some rare eukaryotic chaperones that each assist in the folding of only one target
protein. In particular, we describe (1) the tubulin cofactors, (2) p47, which assists in the folding of collagen, (3) α-hemoglobin
stabilizing protein (AHSP), (4) the adenovirus L4-100 K protein, which is a chaperone of the major structural viral protein,
hexon, and (5) HYPK, the huntingtin-interacting protein. These various-sized proteins (102–1,190 amino acids long) are all
involved in the folding of oligomeric polypeptides but are otherwise functionally unique, as they each assist only one particular
client. This raises a question regarding the biosynthetic cost of the high-level production of such chaperones. As the clients
of faithful chaperones are all abundant proteins that are essential cellular or viral components, it is conceivable that this
necessary metabolic expenditure withstood evolutionary pressure to minimize biosynthetic costs. Nevertheless, the complexity
of the folding pathways in which these chaperones are involved results in error-prone processes. Several human disorders associated
with these chaperones are discussed. 相似文献
247.
Tsai S Clemente-Casares X Santamaria P 《Cellular and molecular life sciences : CMLS》2011,68(23):3781-3795
Autoreactive CD8+ regulatory T cells (Tregs) play important roles as modulators of immune responses against self, and numerical and functional
defects in CD8+ Tregs have been linked to autoimmunity. Several subsets of CD8+ Tregs have been described. However, the origin of these T cells and how they participate in the natural progression of autoimmunity
remain poorly defined. We discuss several lines of evidence suggesting that the autoimmune process itself promotes the development
of autoregulatory CD8+ T cells. We posit that chronic autoantigenic exposure fosters the differentiation of non-pathogenic autoreactive CD8+ T cells into antigen-experienced, memory-like autoregulatory T cells, to generate a “negative feedback” regulatory loop capable
of countering pathogenic autoreactive effectors. This hypothesis predicts that approaches capable of boosting autoregulatory
T cell memory will be able to blunt autoimmunity without compromising systemic immunity. 相似文献
248.
The maintenance of mucosal barrier equilibrium in the intestine requires a delicate and dynamic balance between enterocyte
loss by apoptosis and the generation of new cells by proliferation from stem cell precursors at the base of the intestinal
crypts. When the balance shifts towards either excessive or insufficient apoptosis, a broad range of gastrointestinal diseases
can manifest. Recent work from a variety of laboratories has provided evidence in support of a role for receptors of the innate
immune system, including Toll-like receptors 2, 4, and 9 as well as the intracellular pathogen recognition receptor NOD2/CARD15,
in the initiation of enterocyte apoptosis. The subsequent induction of enterocyte apoptosis in response to the activation
of these innate immune receptors plays a key role in the development of various intestinal diseases, including necrotizing
enterocolitis, Crohn’s disease, ulcerative colitis, and intestinal cancer. This review will detail the regulatory pathways
that govern enterocyte apoptosis, and will explore the role of the innate immune system in the induction of enterocyte apoptosis
in gastrointestinal disease. 相似文献
249.
Proline-rich antimicrobial peptides are a group of cationic host defense peptides of vertebrates and invertebrates characterized
by a high content of proline residues, often associated with arginine residues in repeated motifs. Those isolated from some
mammalian and insect species, although not evolutionarily related, use a similar mechanism to selectively kill Gram-negative
bacteria, with a low toxicity to animals. Unlike other types of antimicrobial peptides, their mode of action does not involve
the lysis of bacterial membranes but entails penetration into susceptible cells, where they then act intracellularly. Some
aspects of the transport system and cytoplasmic targets have been elucidated. These features make them attractive both as
anti-infective lead compounds and as a new class of potential cell-penetrating peptides capable of internalising membrane-impermeant
drugs into both bacterial and eukaryotic cells 相似文献
250.
Eoin E. Kelly Conor P. Horgan Mary W. McCaffrey Paul Young 《Cellular and molecular life sciences : CMLS》2011,68(2):185-194
Long-term potentiation (LTP) defines persistent increases in neurotransmission strength at synapses that are triggered by
specific patterns of neuronal activity. LTP, the most widely accepted molecular model for learning, is best characterised
at glutamatergic synapses on dendritic spines. In this context, LTP involves increases in dendritic spine size and the insertion
of glutamate receptors into the post-synaptic spine membrane, which together boost post-synaptic responsiveness to neurotransmitters.
In dendrites, the material required for LTP is sourced from an organelle termed the endosomal-recycling compartment (ERC),
which is localised to the base of dendritic spines. When LTP is induced, material derived from the recycling compartment,
which contains α-amino-3-hydroxy-5-methyl-4-isoxazole propionate-type glutamate receptors (AMPARs), is mobilised into dendritic
spines feeding the increased need for receptors and membrane at the spine neck and head. In this review, we discuss the importance
of endosomal-recycling and the role of key proteins which control these processes in the context of LTP. 相似文献