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11.
Sandra N. Hing Carolyn M. Giles Angela H. L. Fielder J. Richard Batchelor 《Immunogenetics》1986,23(3):151-155
Twenty-three individuals from various disease groups and normal controls were identified by immunofixation with anti-C4, C4-dependent lysis, determination of Rg (Rodgers) and Ch (Chido) phenotypes, and immunoblotting with C4-specific mouse monoclonal antibody. We found that one haplotype predominates with the C4B
*
5 allele, HLA-A11, B22(55), Cw3, Bf
*
S, C4A
*
4B
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5, which also carries the Ch
1,–2, 3 haplotype. The B5 allotype was also found with HLA-1360, HLA-1335 in Caucasoids, and HLA-B18 in non-Caucasoids; these carried the Ch
–1, –2, –3 haplotype. Our results are in accord with an earlier report of two B5 subtypes, B5Rg+ and B5Rg– (Roos et al. 1984). The specificity of the mouse monoclonal antibodies IC4 and 21312 had been previously related to C4A and C4B, respectively, but our results suggest that they relate more closely to Rg and Ch determinants. 相似文献
12.
Heterogeneity of leukotriene receptors in guinea-pig trachea 总被引:7,自引:0,他引:7
The selective leukotriene (LT) antagonist FPL 55712 antagonized the contractile activity of synthetic LTD4 and E4 on guinea-pig trachea. Schild analysis of the antagonism provided evidence for two distinct receptors for LTD4: one with significantly higher affinity for FPL 55712 than the other. LTE4 appears to interact preferentially with the high affinity receptor. 相似文献
13.
A mathematical model of a rabbit sinoatrial node cell 总被引:3,自引:0,他引:3
14.
The decline of tree diversity on newly isolated tropical islands: A test of a null hypothesis and some implications 总被引:9,自引:0,他引:9
Egbert Giles Leigh Jr S. Joseph Wright Edward Allen Herre Francis E. Putz 《Evolutionary ecology》1993,7(1):76-102
Summary Six islands, each less than a hectare in area, were isolated in about 1913 from the mainland of central Panamá by the rising waters of Gatun Lake. By 1980, the diversity of trees on all but one of these islands was far lower than on mainland plots of comparable size. A restricted subset of tree species has spread on these islands, notablyProtium panamense, Scheelea zonensis, Oenocarpus panamanus andSwartzia simplex. We constructed a null model to predict how chance would change tree diversity and the similarity of tree species compositions of different islands, assuming that each mature tree has equal chances of dying and/or reproducing, regardless of its species. This model cannot account for the diminished diversity of the changes in vegetation on these islands: some factors must be favoring a particular set of tree species.Two factors, exposure to wind and absence of mammals, seem needed to bring about the vegetation changes observed on these small islands. Their vegetation shows many signs of wind damage and of adaptation to resist wind, reflecting its exposure to dry season winds and storm winds sweeping across the lake from the west. Their most common tree species appear to have spread because mammals rarely visit these small and isolated islands. Seed of these common species are normally much eaten by mammals and do not need burial by mammals to escape insect attack.A thorough grasp of plant—animal interactions is needed to understand the events that have taken place on these islands. Identifying those keystone animals essential for maintaining plant diversity is a necessary element of reserve design and forest management in the tropics.The US government has the right to retain a non-exclusive, royalty-free license in and to any copyright covering this paper. 相似文献
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J. D. Penschow Michelle E. Giles John P. Coghlan R. T. Fernley 《Histochemistry and cell biology》1997,107(5):417-422
Carbonic anhydrase VI (CA VI) is a secreted enzyme produced predominantly by serous acinar cells of submandibular and parotid
glands. We have investigated the developmental pattern of CA VI production by these glands in the sheep, from fetal life to
adulthood, using immunohistochemistry. Also, a specific radioimmunoassay for CA VI was used to measure changes in enzyme expression
in the parotid gland postnatally. CA VI is detectable by immunohistochemistry in parotid excretory ducts from 106 days gestation
(term is 145 days), in striated ducts from 138 days and in acinar cells from 1 day postnatal. The duct cell content of CA
VI declined as the acinar cell population increased, a feature also of CA VI immunoreactivity in the submandibular gland.
Production of CA VI by submandibular duct cells was detectable initially at 125 days gestation, and acinar production was
not seen before 29 days post-natal. Apart from the differing ontogeny of CA VI production in ducts and acini of parotid and
submandibular glands, there was a parallel pattern of CA VI expression during the development of these major salivary glands.With
the development of the acinar tissues in the postnatal lamb, there was a dramatic increase (about 600-fold) in the level of
expression of CA VI in the parotid gland between days 7 and 59 as measured by radioimmunoassay.
Accepted: 19 December 1996 相似文献
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