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931.
Boros S Xi Q Dimke H van der Kemp AW Tudpor K Verkaart S Lee KP Bindels RJ Hoenderop JG 《Cellular and molecular life sciences : CMLS》2012,69(6):981-992
Tissue transglutaminase (tTG) is a multifunctional Ca2+-dependent enzyme, catalyzing protein crosslinking. The transient receptor potential vanilloid (TRPV) family of cation channels
was recently shown to contribute to the regulation of TG activities in keratinocytes and hence skin barrier formation. In
kidney, where active transcellular Ca2+ transport via TRPV5 predominates, the potential effect of tTG remains unknown. A multitude of factors regulate TRPV5, many
secreted into the pro-urine and acting from the extracellular side. We detected tTG in mouse urine and in the apical medium
of polarized cultures of rabbit connecting tubule and cortical collecting duct (CNT/CCD) cells. Extracellular application
of tTG significantly reduced TRPV5 activity in human embryonic kidney cells transiently expressing the channel. Similarly,
a strong inhibition of transepithelial Ca2+ transport was observed after apical application of purified tTG to polarized rabbit CNT/CCD cells. Furthermore, tTG promoted
the aggregation of the plasma membrane-associated fraction of TRPV5. Using patch clamp analysis, we observed a reduction in
the pore diameter after tTG treatment, suggesting distinct structural changes in TRPV5 upon crosslinking by tTG. As N-linked
glycosylation of TRPV5 is a key step in regulating channel function, we determined the effect of tTG in the N-glycosylation-deficient
TRPV5 mutant. In the absence of N-linked glycosylation, TRPV5 was insensitive to tTG. Taken together, these observations imply
that tTG is a novel extracellular enzyme inhibiting the activity of TRPV5. The inhibition of TRPV5 occurs in an N-glycosylation-dependent
manner, signifying a common final pathway by which distinct extracellular factors regulate channel activity. 相似文献
932.
Geometry sensing by dendritic cells dictates spatial organization and PGE2-induced dissolution of podosomes 总被引:1,自引:1,他引:0
van den Dries K van Helden SF Riet Jt Diez-Ahedo R Manzo C Oud MM van Leeuwen FN Brock R Garcia-Parajo MF Cambi A Figdor CG 《Cellular and molecular life sciences : CMLS》2012,69(11):1889-1901
Assembly and disassembly of adhesion structures such as focal adhesions (FAs) and podosomes regulate cell adhesion and differentiation. On antigen-presenting dendritic cells (DCs), acquisition of a migratory and immunostimulatory phenotype depends on podosome dissolution by prostaglandin E(2) (PGE(2)). Whereas the effects of physico-chemical and topographical cues have been extensively studied on FAs, little is known about how podosomes respond to these signals. Here, we show that, unlike for FAs, podosome formation is not controlled by substrate physico-chemical properties. We demonstrate that cell adhesion is the only prerequisite for podosome formation and that substrate availability dictates podosome density. Interestingly, we show that DCs sense 3-dimensional (3-D) geometry by aligning podosomes along the edges of 3-D micropatterned surfaces. Finally, whereas on a 2-dimensional (2-D) surface PGE(2) causes a rapid increase in activated RhoA levels leading to fast podosome dissolution, 3-D geometric cues prevent PGE(2)-mediated RhoA activation resulting in impaired podosome dissolution even after prolonged stimulation. Our findings indicate that 2-D and 3-D geometric cues control the spatial organization of podosomes. More importantly, our studies demonstrate the importance of substrate dimensionality in regulating podosome dissolution and suggest that substrate dimensionality plays an important role in controlling DC activation, a key process in initiating immune responses. 相似文献
933.
Enciso-Mora V Broderick P Ma Y Jarrett RF Hjalgrim H Hemminki K van den Berg A Olver B Lloyd A Dobbins SE Lightfoot T van Leeuwen FE Försti A Diepstra A Broeks A Vijayakrishnan J Shield L Lake A Montgomery D Roman E Engert A von Strandmann EP Reiners KS Nolte IM Smedby KE Adami HO Russell NS Glimelius B Hamilton-Dutoit S de Bruin M Ryder LP Molin D Sorensen KM Chang ET Taylor M Cooke R Hofstra R Westers H van Wezel T van Eijk R Ashworth A Rostgaard K Melbye M Swerdlow AJ Houlston RS 《Nature genetics》2010,42(12):1126-1130
To identify susceptibility loci for classical Hodgkin's lymphoma (cHL), we conducted a genome-wide association study of 589 individuals with cHL (cases) and 5,199 controls with validation in four independent samples totaling 2,057 cases and 3,416 controls. We identified three new susceptibility loci at 2p16.1 (rs1432295, REL, odds ratio (OR) = 1.22, combined P = 1.91 × 10(-8)), 8q24.21 (rs2019960, PVT1, OR = 1.33, combined P = 1.26 × 10(-13)) and 10p14 (rs501764, GATA3, OR = 1.25, combined P = 7.05 × 10(-8)). Furthermore, we confirmed the role of the major histocompatibility complex in disease etiology by revealing a strong human leukocyte antigen (HLA) association (rs6903608, OR = 1.70, combined P = 2.84 × 10(-50)). These data provide new insight into the pathogenesis of cHL. 相似文献
934.
In many prokaryotes and eukaryotes, DNA methylation at cis-regulatory sequences determines whether gene expression is on or off. Stable inheritance of these expression states is required in bacterial pathogenesis, cancer and developmental pathways. Here we delineate the factors that control the stability of these states by using the agn43 gene in Escherichia coli as a model system. Systematic disruption of this system shows that a functional switch requires the presence of several, rarely occupied, intermediate states that separate the 'on' and 'off' states. Cells that leave the on and off state enter different intermediate states, where there is a strong bias that drives cells back to their original state. The intermediate states therefore act as buffers that prevent back and forth switching. This mechanism of generating multiple states is an alternative to feedback regulation, and its general principle should be applicable to the analysis of other epigenetic switches and the design of synthetic circuits. 相似文献
935.
936.
Scheper GC van der Klok T van Andel RJ van Berkel CG Sissler M Smet J Muravina TI Serkov SV Uziel G Bugiani M Schiffmann R Krägeloh-Mann I Smeitink JA Florentz C Van Coster R Pronk JC van der Knaap MS 《Nature genetics》2007,39(4):534-539
Leukoencephalopathy with brain stem and spinal cord involvement and lactate elevation (LBSL) has recently been defined based on a highly characteristic constellation of abnormalities observed by magnetic resonance imaging and spectroscopy. LBSL is an autosomal recessive disease, most often manifesting in early childhood. Affected individuals develop slowly progressive cerebellar ataxia, spasticity and dorsal column dysfunction, sometimes with a mild cognitive deficit or decline. We performed linkage mapping with microsatellite markers in LBSL families and found a candidate region on chromosome 1, which we narrowed by means of shared haplotypes. Sequencing of genes in this candidate region uncovered mutations in DARS2, which encodes mitochondrial aspartyl-tRNA synthetase, in affected individuals from all 30 families. Enzyme activities of mutant proteins were decreased. We were surprised to find that activities of mitochondrial complexes from fibroblasts and lymphoblasts derived from affected individuals were normal, as determined by different assays. 相似文献
937.
Richards A van den Maagdenberg AM Jen JC Kavanagh D Bertram P Spitzer D Liszewski MK Barilla-Labarca ML Terwindt GM Kasai Y McLellan M Grand MG Vanmolkot KR de Vries B Wan J Kane MJ Mamsa H Schäfer R Stam AH Haan J de Jong PT Storimans CW van Schooneveld MJ Oosterhuis JA Gschwendter A Dichgans M Kotschet KE Hodgkinson S Hardy TA Delatycki MB Hajj-Ali RA Kothari PH Nelson SF Frants RR Baloh RW Ferrari MD Atkinson JP 《Nature genetics》2007,39(9):1068-1070
Autosomal dominant retinal vasculopathy with cerebral leukodystrophy is a microvascular endotheliopathy with middle-age onset. In nine families, we identified heterozygous C-terminal frameshift mutations in TREX1, which encodes a 3'-5' exonuclease. These truncated proteins retain exonuclease activity but lose normal perinuclear localization. These data have implications for the maintenance of vascular integrity in the degenerative cerebral microangiopathies leading to stroke and dementias. 相似文献
938.
939.
Koolen DA Vissers LE Pfundt R de Leeuw N Knight SJ Regan R Kooy RF Reyniers E Romano C Fichera M Schinzel A Baumer A Anderlid BM Schoumans J Knoers NV van Kessel AG Sistermans EA Veltman JA Brunner HG de Vries BB 《Nature genetics》2006,38(9):999-1001
Submicroscopic genomic copy number changes have been identified only recently as an important cause of mental retardation. We describe the detection of three interstitial, overlapping 17q21.31 microdeletions in a cohort of 1,200 mentally retarded individuals associated with a clearly recognizable clinical phenotype of mental retardation, hypotonia and a characteristic face. The deletions encompass the MAPT and CRHR1 genes and are associated with a common inversion polymorphism. 相似文献
940.
Deficiency of hyccin, a newly identified membrane protein, causes hypomyelination and congenital cataract 总被引:1,自引:0,他引:1
Zara F Biancheri R Bruno C Bordo L Assereto S Gazzerro E Sotgia F Wang XB Gianotti S Stringara S Pedemonte M Uziel G Rossi A Schenone A Tortori-Donati P van der Knaap MS Lisanti MP Minetti C 《Nature genetics》2006,38(10):1111-1113
We describe a new autosomal recessive white matter disorder ('hypomyelination and congenital cataract') characterized by hypomyelination of the central and peripheral nervous system, progressive neurological impairment and congenital cataract. We identified mutations in five affected families, resulting in a deficiency of hyccin, a newly identified 521-amino acid membrane protein. Our study highlights the essential role of hyccin in central and peripheral myelination. 相似文献