| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| We identified a novel cystic fibrosis transmembrane conductance regulator ( CFTR ) associating , PDZ domain containing protein , CAL ( CFTR associated ligand ) containing two predicted coiled coiled domains and one PDZ domain . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The cystic fibrosis transmembrane conductance regulator ( CFTR ) interacting protein , CFTR associated ligand ( CAL ) down regulates total and cell surface CFTR by targeting CFTR for degradation in the lysosome . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| A prenatal diagnosis by chorionic villi sampling was performed in a DMD family with patients showing a deletion of the 5 . 4 kb Pst 1 band detected by the cDNA probe Cf 56a . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The auditory AVCN neurons were categorized both by their sound post stimulus time ( PST ) histograms at their characteristic frequency ( CF ) and the changes in the probability of discharge after PAG stimulation while the tone burst was maintained constant . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Most parameters of VCN neural function exhibited significant changes between 12 and 18 DAB : neural thresholds improved approximately 100 dB ; mean spontaneous discharge rate increased ; the high frequency range of characteristic frequency ( CF ) values increased from 10 . 0 to 24 . 0 kHz ; the upper limit for phase locking increased from 0 . 8 kHz to 3 . 0 kHz ; dynamic range increased from 16 dB to 44 dB , and the proportion of units with well defined initial onset peaks in their post stimulus time ( PST ) response patterns increased from 40 % to 100 % of units . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Discharge history effects were found to include the modification of observed interpeak times of PST responses to clicks , a loss of distinct peaks in the click response of high characteristic frequency ( CF greater than 5 kHz ) fibers , and changes in the ratio of initial to steady state response portions of tone burst responses . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The temporal spacing between the peaks in the histograms for units of similar CF was the same in the normal and noise treated groups , although this can not be taken to infer that an individual unit PST histogram would remain the same after noise exposure as before . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Acoustically driven fibers were classified on the basis of the shape of the poststimulus time ( PST ) histograms to short tone bursts at CF . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Pst was reduced in CF and asthma , again more in the patients with CF . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| PIST was originally described as an interaction partner of the small GTPase TC 10 and was then found to be Golgi associated by binding to syntaxin 6 and to be important for the transport of frizzled proteins and the cystic fibrosis transmembrane conductance regulator to the plasma membrane . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Carboxyfluorescein ( CF ) and Calcein ( CAL ) have almost the same fluorescent spectrum . ^^^ It was proven that this phenomenon can be used for the fractional determination of CF and CAL . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| In 14 patients aged 15 to 35 yr of age with advanced CF , the effects of chronic airflow limitation ( CAL ) , increased physiologic dead space ( VD ) , and the timing components of ventilation ( VE ) on gas exchange during maximal exercise were assessed . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The CAL procedure has been used successfully to analyze human genomic DNA for cystic fibrosis ( CF ) alleles . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| We employed human red blood cells as a model system to check the affinity of MRP 1 ( Multidrug Resistance associated Protein 1 ) towards fluorescein and a set of its carboxyl derivatives : 5 / 6 carboxyfluorescein ( CF ) , 2 ' , 7 ' bis ( 2 carboxyethyl ) 5 / 6 carboxyfluorescein ( BCECF ) and calcein ( CAL ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| We have previously identified the cystic fibrosis transmembrane regulator ( CFTR ) interacting protein CAL and demonstrated that CAL modulates CFTR plasma membrane expression by retaining CFTR within the cell . ^^^ Here , we report that in addition to regulating membrane expression , CAL also regulates the expression of mature CFTR . ^^^ The co expression of hemagglutinin tagged or Myc tagged CAL with green fluorescent protein ( GFP ) CFTR in COS 7 cells causes a dose dependent reduction in mature GFP CFTR , independent of its tags . ^^^ Importantly , bafilomycin A 1 reverses CAL mediated CFTR degradation . ^^^ CAL has no effect on CFTR maturation , suggesting that it exerts its effects on mature CFTR . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The association of the cystic fibrosis transmembrane regulator ( CFTR ) with two PDZ containing molecular scaffolds ( CAL and EBP 50 ) plays an important role in CFTR trafficking and membrane maintenance . ^^^ Here , we characterize the structure and dynamics of the PDZ of CAL and the complex formed with CFTR employing high resolution NMR . ^^^ The C terminus of CFTR binds to CAL with the final four residues ( D ( ) ( 3 ) T R L ( 0 ) ) within the canonical PDZ binding motif , between the beta 2 strand and the alpha 2 helix . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The pasture infestation with infective larvae ( L 3 ) followed a nearly stereotype seasonal pattern ( cf . fig . 2 and fig . 3 ) : A considerable larval population survived on the pasture during the winter , the infestation decreased strongly during April May , was low during June and beginning of July , and increased from the middle of July to reach a peak in September October . ^^^ The infestation was usually much higher just around the faecal pats than in the rest of the pasture area ( cf . fig . 3 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| For example , the disturbance of voluntary contraction by clonus is disregarded ( cf . fig . 8 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Both years the highest number of treatments were administered in the months of February and March ( cf . fig . 1 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The suppuration is further involving the pituitary cleft and adjacent parts of the pituitary ( cf . fig . 1 6 , 8 11 ) . ^^^ In one case only a large abces in teh adenohypophysis is found , without a concominant meningo encephalitis ( cf . fig . 7 ) . . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| In order to study the zonal pattern of the brain stem , this structure was subjected to a topological analysis ( cf , Nieuwenhuys , ' 74 and fig . 13 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Between the given allele of KM19 / PstI polymorphism and CF mutation no other allelic association was found but with delta F 508 . ( Tab . 6 , Fig . 1 , Ref . 18 ) . . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The directionality of phase locking decreases with the neuron ' s CF ( Fig . 10F ) and only slightly changes with sound pressure level ( Fig . 12 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The interaction of the polyene antibiotic amphotericin B ( AmB ) ( Fig . 1 ) with large unilamellar vesicles ( LUV ) was monitored by circular dichroism ( CD ) and carboxyfluorescein ( CF ) release . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The remaining 27 % revealed periodicity in the TIHs ( Fig . 1b e ) , determined by the characteristic frequency ( CF ) of a given fiber . ^^^ Apart from the usual excitatory area , complex response maps were characterized by suppressive areas lying either above ( Fig . 7 ) , below ( Fig . 8e ) , or on both sides of the CF ( Fig . 8a c ) . ^^^ Input output functions at frequencies evoking single tone suppression were nonmonotonic , while they were always monotonic at frequencies near the CF ( Fig . 12 ) . ^^^ They had a periodic pattern determined by the CF and did not depend on the stimulus frequency ( Fig . 3 ) . ^^^ Low CF fibers were observed which changed their time discharge structure to tone levels about 45 dB lower than their thresholds at the CF ( Fig . 6 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The distribution of best frequencies ( BFs ) of units in all three nuclei of the lateral lemniscus showed an overrepresentation in the range corresponding to the constant frequency ( CF ) part of the echolocation signal ( ' filter frequency ' range ) : in the ventral nucleus of the lateral lemniscus ( VNLL ) ' filter neurons ' represented 43 % of all units encountered , in the intermediate nucleus ( INLL ) 33 % , and in dorsal nucleus ( DNLL ) 29 % ( Fig . 2a ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| The sagittal cross section is characterized by the index TI 1 , which in essential is the sum of absolute values of angles in a polygon along the section ( cf . fig . 7 ) . ^^^ The funnel in the coronal cross section is characterized by the index TI 2 , which gives the quotient ( in % ) of the mean funnel width and funnel depth ( cf . fig . 8 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Patients with hypertrophic cardiomyopathy ( HCM ) were divided into two subsets ; ( A ) Apical hypertrophy group ( AH : nine patients ) , with ECG showing left ventricular hypertrophy ( LVH ) and giant negative T waves ( GNT ) , and with LV configurations showing the S or SR form at end diastole on LVG . ( B ) Non apical hypertrophy group ( non AH : 12 patients ) , with ECG showing LVH without GNT and LV configuration showing R form at end diastole on LVG ( cf : Fig . 1 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| Fig . 1 , 2 ) `` Back of the hands opposed ' ' ( cf . ^^^ Fig . 3 ) `` Phalanges opposed ( by their dorsum ) ' ' ( cf . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| It became clear recently that mutations of CFTR may also affect the activity of other membrane conductances including epithelial Na+ channels , KvLQT 1 K+ channels and aquaporins ( Fig . 7 ) . ^^^ |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|
| Interacting proteins: Q9HD26 and P13569 |
Pubmed |
SVM Score :0.0 |
| NA |
|