• 제목/요약/키워드: BMPR1B

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ODAM과 BMPRIB가 법랑질의 석회화에 미치는 영향 (Effect of ODAM and BMPRIB on Enamel Mineralization)

  • 박종태;조광희;배현숙;조영식;김흥중
    • 치위생과학회지
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    • 제11권1호
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    • pp.55-61
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    • 2011
  • 최근에 Odontogenic ameloblast-associated protein (ODAM)은 MMP-20의 발현을 조절하여 법랑모세포 분화와 법랑질의 석회화에 중요한 역할을 한다고 보고되었다. 그러나 이에 대한 명확한 기전은 알려져 있지 않다. 그러므로 이 연구의 목적은 법랑모세포 분화와 법랑질의 석회화 과정에서의 ODAM의 생물학적 기능과 신호 전달 경로를 찾고자 하였다. Ameloblast-lineage cells (ALCs)를 이용하여 ODAM 재조합 단백질을 생성하고 ODAM 과발현 (ODAM overexpressing) 또는 ODAM 억제(ODAM silencing) 세포주를 만들었다. 세포들은 2주 동안 분화 배지에서 ODAM 재조합 단백질을 처리한 군과 처리하지 않는 군으로 나누어 배양하였다. ODAM의 신호 전달 경로를 확인하기 위하여, ALCs에 BMP2와 BMP receptor 1B (BMPR-1B) 억제제인 BAMBI 재조합 단백질을 처리하였고, 또한 BMPR-1B siRNA 이용하여 BMPR-1B의 발현을 억제하였다. 단백질 발현은 western blot 이용하여 분석하였다. 석회화는 sense ODAM 과발현 세포와 ODAM 재조합 단백질을 첨가한 법랑모세포 세포주에서 증진되었다. 또한 ALP 활성화는 sense ODAM 과발현 세포와 ODAM 정제된 단백질를 첨가한 법랑모세포 세포주에서 뚜렷하게 증진되었다. 기관발생과 관련이 있는 BMPR-IB와 석회화 과정과 관련된 CBP2는 ODAM 과발현을 유도한 경우에는 발현이 증가되었으나, ODAM 발현을 억제시킨 경우에는 발현이 현저히 감소하였다. 이상 실험의 결과는 법랑질 형성과정에서 ODAM이 법랑질 석회화를 증진시킬 수 있음을 시사한다.

A Study on BMPR-IB Genes of Bayanbulak Sheep

  • Zuo, Beiyao;Qian, Hongguang;Wang, Ziyu;Wang, Xu;Nisa, Noor;Bayier, Aierdin;Ying, Shijia;Hu, Xiaolong;Gong, Changhai;Guo, Zhiqin;Wang, Feng
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권1호
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    • pp.36-42
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    • 2013
  • The average twin lambing rate of Bayanbulak sheep is 2% to 3%. However, a flock of sheep with a close genetic relationship and an average of 2 to 3 lambs per birth has been found recently. To determine the major genes controlling the prolificacy of the flock in the present study, the flock was designated A while 100 normal Bayanbulak sheep were randomly selected to comprise the control flock B. Ligase detection reaction method was applied to detect and analyze the 10 mutational loci of the 3 candidate prolificacy genes including bone morphogenetic protein type I receptors, bone morphogenetic protein 15, and growth differentiation factor 9. The 10 mutational loci are as follows: FecB locus of the BMPR-IB gene; $FecX^I$, $FecX^B$, $FecX^L$, $FecX^H$, $FecX^G$, and $FecX^R$ of the BMP15 gene; and G1, G8, and FecTT of the GDF9 gene. Two mutations including BMPR-IB/FecB and GDF9/G1 were found in Bayanbulak sheep. Independence test results of the two flocks demonstrate that the FecB locus has a significant effect on the lambing number of Bayanbulak sheep. However, the mutation frequency of the G1 locus in GDF9 is very low. Independence test results demonstrate that the GDF9 locus does not have a significant impact on the lambing performance of Bayanbulak sheep. Among the 10 detected loci, BMPR-IB/FecB is the major gene that influences the high lambing rate of Bayanbulak sheep.

Association of polymorphisms in bone morphogenetic protein receptor-1B gene exon-9 with litter size in Dorset, Mongolian, and Small Tail Han ewes

  • Jia, Jianlei;Chen, Qian;Gui, Linsheng;Jin, Jipeng;Li, Yongyuan;Ru, Qiaohong;Hou, Shengzhen
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권7호
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    • pp.949-955
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    • 2019
  • Objective: The present study was to investigate the association of polymorphisms in exon-9 of the bone morphogenetic protein receptor-1B (BMPR-1B) gene (C864T) with litter size in 240 Dorset, 232 Mongolian, and 124 Small Tail Han ewes. Methods: Blood samples were collected from 596 ewes and genomic DNA was extracted using the phenol: chloroform extraction method. The 304-bp amplified polymerase chain reaction product was analyzed for polymorphism by single-strand conformation polymorphism method. The genotypic frequency and allele frequency of BMPR-1B gene exon-9 were computed after sequence alignment. The ${\chi}^2$ independence test was used to analyze the association of genotypic frequency and litter size traits with in each ewe breed, where the phenotype was directly treated as category. Results: The results indicated two different banding patterns AA and AB for this fragment, with the most frequent genotype and allele of AA and A. Calculated Chi-square test for BMPR-1B gene exon-9 was found to be more than that of p value at the 5% level of significance, indicating that the population under study was in Hardy-Weinberg equilibrium for all ewes. The ${\chi}^2$ independence test analyses indicated litter size differences between genotypes was not the same for each breed. The 304-bp nucleotide sequence was subjected to BLAST analysis, and the C864T mutation significantly affected litter size in singletons, twins and multiples. The heterozygosity in exon-9 of BMPR-1B gene could increase litter size for all the studied ewes. Conclusion: Consequently, it appears that the polymorphism BMPR-1B gene exon-9 detected in this study may have potential use in marker assisted selection for litter size in Dorset, Mongolian, and Small Tail Han ewes.

Production of Transgenic Pigs with an Introduced Missense Mutation of the Bone Morphogenetic Protein Receptor Type IB Gene Related to Prolificacy

  • Zhao, Xueyan;Yang, Qiang;Zhao, Kewei;Jiang, Chao;Ren, Dongren;Xu, Pan;He, Xiaofang;Liao, Rongrong;Jiang, Kai;Ma, Junwu;Xiao, Shijun;Ren, Jun;Xing, Yuyun
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권7호
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    • pp.925-937
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    • 2016
  • In the last few decades, transgenic animal technology has witnessed an increasingly wide application in animal breeding. Reproductive traits are economically important to the pig industry. It has been shown that the bone morphogenetic protein receptor type IB (BMPR1B) A746G polymorphism is responsible for the fertility in sheep. However, this causal mutation exits exclusively in sheep and goat. In this study, we attempted to create transgenic pigs by introducing this mutation with the aim to improve reproductive traits in pigs. We successfully constructed a vector containing porcine BMPR1B coding sequence (CDS) with the mutant G allele of A746G mutation. In total, we obtained 24 cloned male piglets using handmade cloning (HMC) technique, and 12 individuals survived till maturation. A set of polymerase chain reactions indicated that 11 of 12 matured boars were transgene-positive individuals, and that the transgenic vector was most likely disrupted during cloning. Of 11 positive pigs, one (No. 11) lost a part of the terminator region but had the intact promoter and the CDS regions. cDNA sequencing showed that the introduced allele (746G) was expressed in multiple tissues of transgene-positive offspring of No.11. Western blot analysis revealed that BMPR1B protein expression in multiple tissues of transgene-positive $F_1$ piglets was 0.5 to 2-fold higher than that in the transgene-negative siblings. The No. 11 boar showed normal litter size performance as normal pigs from the same breed. Transgene-positive $F_1$ boars produced by No. 11 had higher semen volume, sperm concentration and total sperm per ejaculate than the negative siblings, although the differences did not reached statistical significance. Transgene-positive $F_1$ sows had similar litter size performance to the negative siblings, and more data are needed to adequately assess the litter size performance. In conclusion, we obtained 24 cloned transgenic pigs with the modified porcine BMPR1B CDS using HMC. cDNA sequencing and western blot indicated that the exogenous BMPR1B CDS was successfully expressed in host pigs. The transgenic pigs showed normal litter size performance. However, no significant differences in litter size were found between transgene-positive and negative sows. Our study provides new insight into producing cloned transgenic livestock related to reproductive traits.

Associations of Single Nucleotide Polymorphisms in BMPR-IB Gene with Egg Production in a Synthetic Broiler Line

  • Zhang, N.B.;Tang, H.;Kang, L.;Ma, Y.H.;Cao, D.G.;Lu, Y.;Hou, M.;Jiang, Y.L.
    • Asian-Australasian Journal of Animal Sciences
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    • 제21권5호
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    • pp.628-632
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    • 2008
  • Egg production traits are economically important both for egg-laying and broiler lines of chicken. In sheep, the Q249R mutation in BMPR-IB is associated with ovulation rate. The present study cloned a partial chicken BMPR-IB fragment which contained the corresponding ovine Q249R mutation, including partial exon 6 and exon 7 and full-length intron 6. Five nucleotide changes were identified by alignment of the fragment amplified from Jining Bairi and Zang chickens. Among these nucleotide substitutions, the C/T transition at the base position of 35 and the A/G transition at the base position of 287 were found to be highly polymorphic, and named as SNPs C35T and A287G, respectively. For the SNP C35T, 331 hens of a synthetic broiler line were genotyped by a PCR-SSCP approach and allele C was found to be dominant. For the SNP A287G, 604 birds from the synthetic broiler line, a commercial egg-laying line, as well as three Chinese indigenous chicken breeds were genotyped by a PCR-RFLP technique. The associations of these two SNPs with egg production traits in the broiler line were analyzed. The results indicated that both the C35T and the A287G SNPs were not associated with egg production at 33wks and from 33wks to 42 wks (p>0.1), whereas the SNP A287G was associated with egg production from 47 to 56 wks (p<0.05). The dominance genetic effects on this latter trait and on egg production from 33 to 42 wks were significant (p<0.05).

Alk3/Alk3b and Smad5 Mediate BMP Signaling during Lymphatic Development in Zebrafish

  • Kim, Jun-Dae;Kim, Jongmin
    • Molecules and Cells
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    • 제37권3호
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    • pp.270-274
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    • 2014
  • Lymphatic vessels are essential to regulate interstitial fluid homeostasis and diverse immune responses. A number of crucial factors, such as VEGFC, SOX18, PROX1, FOX2C, and GJC2, have been implicated in differentiation and/or maintenance of lymphatic endothelial cells (LECs). In humans, dysregulation of these genes is known to cause lymphedema, a debilitating condition which adversely impacts the quality of life of affected individuals. However, there are no currently available pharmacological treatments for lymphedema, necessitating identification of additional factors modulating lymphatic development and function which can be targeted for therapy. In this report, we investigate the function of genes associated with Bone Morphogenetic Protein (BMP) signaling in lymphatic development using zebrafish embryos. The knock-down of BMP type II receptors, Bmpr2a and Bmpr2b, and type I receptors, Alk3 and Alk3b, as well as SMAD5, an essential cellular mediator of BMP signaling, led to distinct lymphatic defects in developing zebrafish. Therefore, it appears that each constituent of the BMP signaling pathway may have a unique function during lymphatic development. Taken together, our data demonstrate that BMP signaling is essential for normal lymphatic vessel development in zebrafish.