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1.
Small conductance Ca2+-sensitive potassium (SK2) channels are voltage-independent, Ca2+-activated ion channels that conduct potassium cations and thereby modulate the intrinsic excitability and synaptic transmission of neurons and sensory hair cells. In the cochlea, SK2 channels are functionally coupled to the highly Ca2+ permeant α9/10-nicotinic acetylcholine receptors (nAChRs) at olivocochlear postsynaptic sites. SK2 activation leads to outer hair cell hyperpolarization and frequency-selective suppression of afferent sound transmission. These inhibitory responses are essential for normal regulation of sound sensitivity, frequency selectivity, and suppression of background noise. However, little is known about the molecular interactions of these key functional channels. Here we show that SK2 channels co-precipitate with α9/10-nAChRs and with the actin-binding protein α-actinin-1. SK2 alternative splicing, resulting in a 3 amino acid insertion in the intracellular 3′ terminus, modulates these interactions. Further, relative abundance of the SK2 splice variants changes during developmental stages of synapse maturation in both the avian cochlea and the mammalian forebrain. Using heterologous cell expression to separately study the 2 distinct isoforms, we show that the variants differ in protein interactions and surface expression levels, and that Ca2+ and Ca2+-bound calmodulin differentially regulate their protein interactions. Our findings suggest that the SK2 isoforms may be distinctly modulated by activity-induced Ca2+ influx. Alternative splicing of SK2 may serve as a novel mechanism to differentially regulate the maturation and function of olivocochlear and neuronal synapses.  相似文献   
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Summary Multiple endocrine neoplasia type 1 (MEN1) is characterized by neoplasia of the parathyroids, the pancreas, and the pituitary. Tumorigenesis involves unmasking of a recessive mutation at the MEN1 locus, which has been mapped to the centromeric part of chromosomal region 11q. In order to localize the MEN1 gene further and to make its isolation possible, a number of new markers were isolated. Two radiation-reduced somatic cell hybrids were identified that only contained markers close to and flanking the MEN1 region. DNA from these hybrids was used for the construction of a cosmid library, and clones containing human inserts were isolated. In addition, cosmid clones were isolated for locus expansion of 7 other markers that were mapped to the 11q12–13.2 region. The 33 newly isolated clones together with 25 previously published markers from this region were analyzed in a panel of radiation-reduced somatic cell hybrids. From the hybridization pattern, the region was divided into 11 parts. New restriction fragment length polymorphisms were identified in 7 of the newly isolated cosmid clones and in one plasmid. These were then used to sublocalize meiotic cross-overs more precisely in two MEN1 families, thus refining the mapping of the disease gene.  相似文献   
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Injury to the glenoid fossa   总被引:1,自引:0,他引:1  
An illustrated case of fracture through the confines of the glenoid fossa by the mandibular condyle is presented. The mechanism of injury and postinjury sequelae of this rarely reported but frequently suspected occurrence are discussed and a treatment rationale proposed. The key to the diagnosis of this entity is an awareness of vector forces directed to the region of the glenoid fossa with or without evidence of subcondylar fracture.  相似文献   
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Summary In small leaf explants fromNautilocalyx lynchii (Hook. f.) Sprague (Gesneriaceae) the vacuolated epidermal cells divide after 3–4 days. Most cells divide periclinally, but longitudinal and transverse divisions are also found. Before mitosis the cells form a phragmosome (PS), a cytoplasmic structure which contacts the cell cortex at the future division site. An experimental approach was used to find out at which time the plane of cell division becomes fixed: prior to or during the formation of a PS.When 3 day-old explants were divided into two parts by a longitudinal cut, a high percentage of the cells near the wound divided longitudinally. Cells which already had a PS at the time of wounding most often divided in the plane of the PS. Some of the cells with a non-longitudinal PS, however, formed a longitudinal cell wall after the replacement of the original PS by a longitudinal PS.The observations show that most cells which had not yet formed a PS could be induced to form a cell wall in a new direction. As soon as the formation of the PS had started, however, it became more difficult to induce a change in the plane of cell division. These results suggest that the division site is chosen during the formation of the PS.Abbreviations BMT band of microtubules - DIC differential interference contrast microscopy - l longitudinal - l-o longitudinal-oblique - MT microtubule - p periclinal - PM prometaphase - PPB preprophase band - PS phragmosome - t transverse - t-o transverse-oblique  相似文献   
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Pituitary adenylate cyclase-activating polypeptide (PACAP) and helospectin are two vasoactive intestinal polypeptide (VIP)-related neuropeptides that have recently been demonstrated in the mammalian gut; the aim of this study was to reveal their occurrence and localisation in the gastrointestinal tract, swimbladder, urinary bladder and the vagal innervation of the gut of teleosts, using immunohistochemical methods on whole-mounts and sections of these tissues from the Atlantic cod, Gadus morhua and the rainbow trout, Oncorhynchus mykiss. Both PACAP-like and helospectin-like peptides were present in the gut wall of the two species. Immunoreactive nerve fibres were found in all layers but were most frequent in the myenteric plexus and along the circular muscle fibres. Immunoreactivity was also demonstrated in nerves innervating the swimbladder wall, the urinary bladder and blood vessels to the gut. Immunoreactive nerve cell bodies were found in the myenteric plexus of the gut and in the muscularis mucosae of the swimbladder. In the vagus nerve, non-immunoreactive nerve cells were surrounded by PACAP-immunoreactive fibres. Double staining revealed the coexistence of PACAP-like and helospectin-like peptides with VIP in all visualized nerve fibres and in some endocrine cells. It is concluded that PACAP-like and helospectin-like peptides coexist with VIP in nerves innervating the gut of two teleost species. The distribution suggests that both PACAP and helospectin, like VIP, are involved in the control of gut motility and secretion.  相似文献   
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Zusammenfassung Es wurde die Entwicklungsgeschichte einiger Organsysteme vom Beginn der Segmentierung des Keimstreifens bis zum 1. Larvenstadium anLimulus polyphemus untersucht.Von besonderem Interesse erschien die Ausgestaltung metamerer Strukturen mesodermaler und ektodermaler Herkunft.Zwei Fragen standen im Vordergrund dieser Arbeit, einmal die umstrittene Abgrenzung der Prosoma-Opisthosoma-Grenze, zum zweiten die Entstehung des Syncephalon eines ursprünglichen Cheliceraten. Die Mesodermversorgung des Kopfes entspricht der anderer genauer untersuchter Cheliceraten, Es ist labrales Mesoderm und ein ausgedehntes prächelicerales Coelom vorhanden. Die prospektive Bedeutung des labralen Mesoderms ist die Ausbildung der schwachentwickelten eigentlichen Labralmuskulatur, vor allem aber die Bildung von Mundwinkelprotraktoren, rostralen Vorderdarmdilatatoren und Vorderdarmmuskulatur.Die prospektive Bedeutung des Prächelicerencoeloms liegt in der Bildung der Aorta anterior. Vermutlich ist die Entstehung des vorderen komplexen Dotterseptums ebenfalls auf den Einfluß dieses Prächelicerencoeloms zurückzuführen.Im Verlauf dieses Dotterseptums erfolgt eine bemerkenswerte Umkehrung der serial homolog entstehenden Anlagen mesodermaler Elemente. Die dorsale Extremitätenmuskulatur der Cheliceren gelangt gegenüber der dorsalen Extremitätenmuskulatur des folgenden, ja sogar des übernächsten Segmentes in eine caudal verschobene Position. Wahrscheinlich ist vergleichbares auch für die vordersten Suspensormuskeln des Endosternits der Fall.Im Nervensystem dieses Bereiches lassen sich ebenfalls eine Fülle von Besonderheiten nachweisen:Das Ganglion der Cheliceren besitzt nur eine vor dem Vorderdarm verlaufende Kommissur. Unabhängig von ihm entsteht in der Vorderdarmseitenwand ein Strang neurogenen Gewebes, der sich sekundär mit dem Chelicerenganglion verbindet und die sogenannten Rostralganglien, besser Stomodaealganglien oder Pharyngealganglien liefert, von denen aus, der Seitenwand des Vorderdarmes anliegend, sehr deutliche Nervenstränge dem Vorderdarm entlang ziehen (Stomodaealnerven nach Patten u. Redenbaugh, 1900).Einmalig innerhalb der Arthropoden ist die Versorgung des Vorderdarmes mit Muskulatur, die Beziehung zu sicher poststomodaeal angelegten Segmenten aufweist. Wenn auch deren Herkunft nur in wenigen Fällen geklärt werden konnte, so ist zumindest sicher, daß poststomodaeale Anteile des Primärsternits in den Vorderdarm eingebaut werden.Vor dem Chelicerenganglion liegt das von Johansson (1933) als Antennalganglion beschriebene Gebilde. Seine Bedeutung wird diskutiert. Rostral folgt ein weiteres Ganglion, welches aus den sekundär verschmolzenen Zentralkörperanlagen entsteht. Das Archicerebrum besteht aus den sehr spät entstehenden und mit zipfelförmigen Fortsätzen bis ins Epistom reichende Corpora pedunculata, dem sogenannten Cerebralganglion, welches die Sehzentren für die Medianaugen enthält und den seitlich angrenzenden optischen Ganglien. Das Gehirn vonLimulus ist durch Konzentrationsprozesse in medianer Richtung und damit verbunden einer Emporhebung von Zentralkörperganglion und Antennalganglion gekennzeichnet.Für das Verständnis der ungewöhnlichen Position des Komplexauges vonLimulus ist der Nachweis seiner caudalen Verlagerung wichtig.Das Herz entsteht aus den dorsalen Teilen der Coelome 5 bis 13.Das 7. Metamer wird ganz und das 8. zum größten Teil in das Prosoma einbezogen. Eine entscheidende Bedeutung der sich hierbei abspielenden Verlagerungsvorgänge kommt dem Dottersegment 6 zu. Im Opisthosoma verbleiben die Ganglien 9 bis 16. Die Ausgestaltung dorsoventraler Muskulatur macht die Anlage von insgesamt 18 Metameren wahrscheinlich. Die Zuordnung des Coeloms zu ektodermalen Strukturen (Seitenzähne und Seitenstachel des Opisthosomas sowie dorsalen Borsten wird diskutiert).Die anLimulus beobachteten gegenläufigen Gestaltungsbewegungen stellen eine Fülle von Fragen hinsichtlich der sie bewirkenden Faktoren.
Contributions to the embryology ofLimulus polyphemus L. (Chelicerata, Xiphosura)
Summary The embryology of some organ systems from the beginning of the segmentation of the germ band to the first larval stage has been studied onLimulus polyphemus.The main concern was the formation of the metameric structures of mesodermal and ectodermal origin.Two question were mainly dealt with in this work: firstly, the controversal limitation between prosoma and opisthosoma; secondly, the development of the syncephalon of a primitive chelicerate. The mesodermal supply of the head agrees with other carefully studied chelicerates. There is a labral mesoderm and an expanded precheliceral coelom. The prospective importance of the labral mesoderm is the formation of the weakly developed labral muscles s.str., but mainly the development of the protractors of the mouth edge, the rostral dilatators of the esophagus, and the muscular sheath of the esophagus.The prospective significance of the precheliceral coelom is the formation of the aorta anterior. Presumably the development of the most anterior compound yolk septum is also due to the influence of this precheliceral coelom.In the course of this yolk septum a remarkable distortion of serially homologous developing anlagen of mesodermal elements occurs. The dorsal muscular system of the chelicera is placed caudal to the first ambulatory limb, even caudal to that of the second ambulatory limb. It might be the same for the anterior suspensor muscles of the endosternite.In the nervous system of this region quite a number of peculiarities can be found: The ganglion of the cheliceres has only one commissure which is in front of the esophagus. Independent of the cheliceral ganglion a line of neurogenic tissue develops in the lateral walls of the esophagus. Later this line comes into connection with the pilem of the cheliceral ganglion. This neurogenic line forms the so-called rostral, or better stomodaeal, ganglion and the very distinct stomodaeal nerves.Unique within the arthropods is the supply of the esophagus with dilatator muscles, which go to the base of the ambulatory legs 1 and 4 and the endosternite in close connection with the endosternocoxal muscles of those legs. The origin of most of the muscles is not quite clear but some show that poststomodaeal parts are incorporated in the esophagus.In front of the cheliceral ganglion we find the antennal ganglion first described by Johansson (1933). Its importance is discussed. An other ganglion follows further rostral which develops out of the secondarily united anlagen of the central body. The archicerebrum contains the corpora pedunculata which extends backward into the epistome, the so-called cerebral ganglion with the centers for the dorsomedian eyes, and laterally the optic ganglion. The brain ofLimulus is emphasized by the process of concentration in a median direction which brings the central body and the antennal ganglion in dorsal position.For an understanding of the unusual position of the complex eye ofLimulus, the demonstration of its caudal shifting is of importance.The heart develops out of dorsal parts of coelomic cavities 5 to 13.The seventh segment is completely amd the eighth segment in its main parts incorporated in the prosoma. The enlargement of the sixth yolk segment plays a dominant rôle within the process of shifting. Ganglions 9 to 16 stay within the opisthosoma. The development of the dorsoventral muscles shows the formation of 18 metamers. The relation between the coelomic and extodermal structures such as the spine, teeth, and apodemes of the opisthosoma is discussed.The shifting of material in a different or often antagonistic direction raises many question concerning the physiologic factors.

Verzeichnis der Abkürzungen Aa Aorta anterior - AG Antennalganglion - ALat Arteria lateralis - Btm Branchiothorakalmuskeln,=Branchioprosomamuskeln - Ce Cerebrum - CG Cerebralganglion - Ch Chelicere - ChG Chelicerenganglion - Chi Chilarium - ChN Chelicerennerv - Cö Coelom - CöP Coelom der Prächelicere - Cp Corpora pedunculata - Cpa Caudalpapille - Cx Coxa - d dorsal - Dd Dotterdivertikel - Dlm Dorsaler Längsmuskel - Dprm Dorsaler Promotormuskel - Drm Dorsaler Remotormuskel - Ds Dottersegment - Dvm Dorsoventralmuskel - E Endosternit - Ent Entapophyse - Fe Femur - Fl Flabellum - G Ganglion - H Herz - Hv Herzventil - h hinterer - i innerer - KA Komplexauge - Ki Kiemenblätter - Kkn Kiemenknorpel - Ko Kommissur - KoCh Kommissur der Chelicere - Kv Kiemenvene - l lateraler - La Lade - Lam Longitudinaler abdominaler Muskel - Ln Labralnerv - Lo Lateralorgan - MA Medianauge - MAA Medianaugenanlage - MAE Medianaugeneinstülpung - MASt Medianaugenstrang - Mes Mesoderm - MuCh dorsale Chelicerenmuskeln - N Nerv - NCh Chelicerennerv - NMA Medianaugennerv - NZ Neurale Zwischenzellen - OG Optisches Ganglion - Ol Oberlippe - Olmes Oberlippenmesoderm - P Pedunculus - Pi Pilem - Pt Patella - Py pyknotische Kerne - SA Seitenarterienanlage - SuE Suspensormuskeln des Endosternits - Sch Schildrand - SchA Schildrandanlage - Scl Sclerite der Coxa - Sto Stomodaeum - Stomes Stomodaeummesoderm - StoG Stomodaeumganglion - StZ Stäbchenzellen - Ta Tarsus - Tb Tibia - Tr Trochanter - v ventrale - Vd Vorderdarm - VLm ventrale Längsmuskel - Vo Ventralorganartige Bildung - Vpkm Venoperikardialmuskel - Zk Zentralkörperganglion  相似文献   
10.
A purification method for the “CAMP” factor is described. The purified preparation obtained is a peptide with a molecular weight of about 15000. Amino acid analysis has shown that this peptide contains an appreciable amount of hydroxyproline.  相似文献   
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