• 제목/요약/키워드: Monomeric species

검색결과 42건 처리시간 0.018초

Tissues Expression, Polymorphisms Identification of FcRn Gene and Its Relationship with Serum Classical Swine Fever Virus Antibody Level in Pigs

  • Liu, Yang;Wang, Chonglong;Liu, Zhengzhu;Xu, Jingen;Fu, Weixuan;Wang, Wenwen;Ding, Xiangdong;Liu, Jianfeng;Zhang, Qin
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권8호
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    • pp.1089-1095
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    • 2012
  • Neonatal Fc receptor (FcRn) gene encodes a receptor that binds the Fc region of monomeric immunoglobulin G (IgG) and is responsible for IgG transport and stabilization. In this report, the 8,900 bp porcine FcRn genomic DNA structure was identified and putative FcRn protein included 356 amino acids. Alignment and phylogenetic analysis of the porcine FcRn amino acid sequences with their homologies of other species showed high identity. Tissues expression of FcRn mRNA was detected by real time quantitative polymerase chain reaction (Q-PCR), the results revealed FcRn expressed widely in ten analyzed tissues. One single nucleotide polymorphism (SNP) (HQ026019:g.8526 C>T) in exon6 region of porcine FcRn gene was demonstrated by DNA sequencing analysis. A further analysis of SNP genotypes associated with serum Classical Swine Fever Virus antibody (anti-CSFV) concentration was performed in three pig populations including Large White, Landrace and Songliao Black pig (a Chinese indigenous breed). Our results of statistical analysis showed that the SNP had a highly significant association with the level of anti-CSFV antibody (At d 20; At d 35) in serum (p = 0.008; p = 0.0001). Investigation of expression and polymorphisms of the porcine FcRn gene will help us in further understanding the molecular basis of the antibody regulation pathway in the porcine immune response. All these results indicate that FcRn gene might be regarded as a molecular marker for genetic selection of anti-CSFV antibody level in pig disease resistance breeding programmes.

산소-니트로실 착물의 연구 (제2보) 부틸아미드옥심 유도체의 텅스텐 산소-니트로실 착물의 합성과 특성 (Studies of Oxo-Nitrosyl Complexes(Ⅱ) Synthesis and Properties of Tungsten Oxo-Nitrosyl Complexes with Butylamidoxime Derivatives)

  • 노수균;오상오
    • 대한화학회지
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    • 제39권11호
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    • pp.856-862
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    • 1995
  • 본 연구의 텅스텐 옥소-니트로실 착물 $(n-Bu_4N)_2[W_5O_{12}(NO)_2{RC(NH_2)NHO}_2{RC(NH)NO}_2]{R\;=\;(CH_3)CH, CH_3CH_2CH_2,CH_3SCH_2}$은 텅스텐(VI) 다핵 착물 $(n-Bu_4N)_2[W_6O_{19}]$, 텅스텐 디니트로실 단핵 착물 $[W(NO)_2(acac)(CH_3CN)_2](BF_4)$ 및 부틸 아미드옥심 유도체의 반응에서 얻었다. 합성한 착물은 원소분석, 적외선, 전자 흡수 및 핵자기 공명 스펙트럼에 의해 특성을 조사하였다. 전자를 끌어당기는 ${W(NO)_2}^{2+}$ 단위체는 두 개의 이핵체 ${W_2O_5}^{2+}$ 사이의 중심에 삽입되어 오핵종을 이룬다. $(n-Bu_4N)_2[W_5O_{12}(NO)_2{(CH_3)_2CHC(NH_2)NHO}_2/{(CH_3)_2/CHC(NH)NO}_2]$$^1{H} NMR$ 스펙트럼에서 네 개의 이중선이 나타남으로 양성자간의 상호작용이 큰 것을 추정할수있다. $^{13}C$ NMR 스펙트럼은 배위된 네 개의 배위자중 두개의 배위자가 나타남으로 두 배위자의 서로 다른 배위모형과 대칭성에 대한 정보를 준다. ${W(NO_2)}^{2+}$ 단위체는 형식상 시스형이며 기하학적으로 $C_{2v}$ 대칭을 가진다.

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