AIM:To report a phenotypic variant pedigree of lattice corneal dystrophy(LCD)associated with two mutations,R124C and A546 D,in the transforming growth factor betainduced gene(TGFBI).METHODS:A detailed ocular exa...AIM:To report a phenotypic variant pedigree of lattice corneal dystrophy(LCD)associated with two mutations,R124C and A546 D,in the transforming growth factor betainduced gene(TGFBI).METHODS:A detailed ocular examination was taken for all participants of a LCD family. Peripheral blood leukocytes from each participant were extracted to obtain the DNA. Polymerase chain reaction(PCR)of all seventeen exons of TGFBI gene was performed. The products were sequenced and analyzed. Histological examination was carried out after a penetrating keratoplasty from the right eye of proband. RESULTS:Genetic analysis showed that the proband and all 6 affected individuals harbored both a heterozygous CGC to TGC mutation at codon 124 and a heterozygous GCC to GAC mutation at codon 546 of TGFBI. None of the 100 control subjects and unaffected family members was positive for these two mutations. Ocular examination displayed multiple refractile lattice-like opacities in anterior stroma of the central cornea and small granular deposits in the peripheral cornea. The deposits were stained positively with Congo red indicating be amyloid in nature and situated mainly in the anterior and middle stroma. CONCLUSION:We observed a novel LCD family which carried two pathogenic mutations(R124C and A546D)in the TGFBI gene. The phenotypic features were apparently different from those associated with corresponding single mutations. The result reveals that although the definite mutation is the most important genetic cause of the disease,some different modifier alleles may influence the phenotype.展开更多
Background Idiopathic pulmonary fibrosis (IPF) is a progressive and lethal fibrotic lung disease of unknown etiology. Host susceptibility or genetic factors may be important for the predisposition to it. Transformin...Background Idiopathic pulmonary fibrosis (IPF) is a progressive and lethal fibrotic lung disease of unknown etiology. Host susceptibility or genetic factors may be important for the predisposition to it. Transforming growth factor-β1 (TGF-β1 a potent profibrotic cytokine) and plasminogen activator inhibitor 1 (PAl-1) play important roles in the development of pulmonary fibrosis. The objective of the study was to investigate the association between the gene polymorphisms of TGF-β1 869 T〉C and PAl-1 4G/5G and the susceptibility to IPF in Han ethnicity. Methods Polymerase chain reaction (PCR) and restriction fragment length polymorphism were performed to analyse the gene polymorphisms of TGF-β1 in 869T〉C and PAl-1 4G/5G in 85 IPF patients and 85 healthy controls matched in age, gender, race and smoker status. Results There was a significant difference in 869T〉C genotype distribution of TGF-β1 between IPF cases and controls, a significant negative association between TC genotype and the development of IPF (OR=0.508, 95% CI: 0.275-0.941) and a positive association between CC genotype and the development of IPF (OR=1.967, 95% CI: 1.063-3.641). There was a significant positive association between PAl-1 5G/5G genotype and the development of IPF (OR=0.418, 95% CI: 0.193-0.904). Conclusions Gene polymorphisms of TGF-β1 in 869T〉Cand PAl-1 4G/5G may affect the susceptibility to IPF in Han ethnicity. Further investigations are needed to confirm these findings and assess their biological significance in the development of the disease in this ethnic population.展开更多
转化生长因子-β(transform ing growth factor-,βTGF-β)是一类多功能多肽类生长因子,对细胞增殖分化、细胞外基质产生、血管生成、细胞凋亡及机体免疫系统均起着非常重要的调节作用。体内外实验证实TGF-β及其受体的表达均受到低氧...转化生长因子-β(transform ing growth factor-,βTGF-β)是一类多功能多肽类生长因子,对细胞增殖分化、细胞外基质产生、血管生成、细胞凋亡及机体免疫系统均起着非常重要的调节作用。体内外实验证实TGF-β及其受体的表达均受到低氧的调节,但这种调节具有明显的组织细胞特异性,而且不同亚型的TGF-β及不同类型的受体对低氧的反应是通过不同的信号分子或转录因子来介导的。展开更多
Bone marrow-derived mesenchymal stem cells differentiate into neurons under the induction of Schwann cells. However, key microRNAs and related pathways for differentiation remain unclear. This study screened and ident...Bone marrow-derived mesenchymal stem cells differentiate into neurons under the induction of Schwann cells. However, key microRNAs and related pathways for differentiation remain unclear. This study screened and identified differentially expressed microRNAs in bone marrow- derived mesenchymal stem cells induced by Schwann cell-conditioned medium, and explored targets and related pathways involved in their differentiation into neuronal-like cells. Primary bone marrow-derived mesenchymal stem cells were isolated from femoral and tibial bones, while primary Schwann cells were isolated from bilateral saphenous nerves. Bone marrow-derived mesenchymal stem cells were cultured in unconditioned (control group) and Schwann cell-conditioned medium (bone marrow-derived mesenchymal stem cell + Schwann cell group). Neuronal differentiation of bone marrow-derived mesenchymal stem cells induced by Schwann cell-conditioned medium was observed by time-lapse imaging. Upon induction, the morphology of bone marrow-derived mesencaymal stem cells changed into a neural shape with neurites. Results of quantitative reverse transcription-polymerase chain reaction revealed that nestin mRNA expression was upregulated from 1 to 3 days and downregulated from 3 to 7 days in the bone marrow-derived mesenchymal stem cell + Schwann cell group. Compared with the control group, microtubule-associated protein 2 mRNA expression gradually increased from 1 to 7 days in the bone marrow-derived mesenchymal stem cell + Schwann cell group. After 7 days of induction, microRNA analysis iden:ified 83 significantly differentially expressed microRNAs between the two groups. Gene Ontology analysis indicated enrichment of microRNA target genes for neuronal projection development, regulation of axonogenesis, and positive regulation of cell proliferation. Kyoto Encyclopedia of Genes and Genomes pathway analysis demonstrated that Hippo, Wnt, transforming growth factor-beta, and Hedgehog signaling pathv/ays were potentially associated with neural differentiation of bone marrow-derived mesenchymal stem cells. This study, which carried out successful microRNA analysis of neuronal-like cells differentiated from bone marrow-derived mesenchymal stem cells by Schwann cell induction, revealed key microRNAs and pathways involved in neural differentiation of bone marrow-derived mesenchymal stem cells. All protocols were approved by the Animal Ethics Committee of Institute of Radiation Medicine, Chinese Academy of Medical Sciences on March 12, 2017 (approval number: DWLI-20170311).展开更多
基金Supported by the Ph.D.Programs Foundation of Heilongjiang Province(No.LBH-Q13126)the Research Foundation of the First Affiliated Hospital,Harbin Medical University(No.2011BS017)
文摘AIM:To report a phenotypic variant pedigree of lattice corneal dystrophy(LCD)associated with two mutations,R124C and A546 D,in the transforming growth factor betainduced gene(TGFBI).METHODS:A detailed ocular examination was taken for all participants of a LCD family. Peripheral blood leukocytes from each participant were extracted to obtain the DNA. Polymerase chain reaction(PCR)of all seventeen exons of TGFBI gene was performed. The products were sequenced and analyzed. Histological examination was carried out after a penetrating keratoplasty from the right eye of proband. RESULTS:Genetic analysis showed that the proband and all 6 affected individuals harbored both a heterozygous CGC to TGC mutation at codon 124 and a heterozygous GCC to GAC mutation at codon 546 of TGFBI. None of the 100 control subjects and unaffected family members was positive for these two mutations. Ocular examination displayed multiple refractile lattice-like opacities in anterior stroma of the central cornea and small granular deposits in the peripheral cornea. The deposits were stained positively with Congo red indicating be amyloid in nature and situated mainly in the anterior and middle stroma. CONCLUSION:We observed a novel LCD family which carried two pathogenic mutations(R124C and A546D)in the TGFBI gene. The phenotypic features were apparently different from those associated with corresponding single mutations. The result reveals that although the definite mutation is the most important genetic cause of the disease,some different modifier alleles may influence the phenotype.
基金This work was supported by grants from-Beijing Municipal Scientific & Technology Commission (No. Z090507006209012, No. PXM2010 014226 07 000097) and Beijing Natural Science Foundation (No. 7082037).Acknowledgements: The authors are grateful to MA Li and XIN Ping for collecting samples.
文摘Background Idiopathic pulmonary fibrosis (IPF) is a progressive and lethal fibrotic lung disease of unknown etiology. Host susceptibility or genetic factors may be important for the predisposition to it. Transforming growth factor-β1 (TGF-β1 a potent profibrotic cytokine) and plasminogen activator inhibitor 1 (PAl-1) play important roles in the development of pulmonary fibrosis. The objective of the study was to investigate the association between the gene polymorphisms of TGF-β1 869 T〉C and PAl-1 4G/5G and the susceptibility to IPF in Han ethnicity. Methods Polymerase chain reaction (PCR) and restriction fragment length polymorphism were performed to analyse the gene polymorphisms of TGF-β1 in 869T〉C and PAl-1 4G/5G in 85 IPF patients and 85 healthy controls matched in age, gender, race and smoker status. Results There was a significant difference in 869T〉C genotype distribution of TGF-β1 between IPF cases and controls, a significant negative association between TC genotype and the development of IPF (OR=0.508, 95% CI: 0.275-0.941) and a positive association between CC genotype and the development of IPF (OR=1.967, 95% CI: 1.063-3.641). There was a significant positive association between PAl-1 5G/5G genotype and the development of IPF (OR=0.418, 95% CI: 0.193-0.904). Conclusions Gene polymorphisms of TGF-β1 in 869T〉Cand PAl-1 4G/5G may affect the susceptibility to IPF in Han ethnicity. Further investigations are needed to confirm these findings and assess their biological significance in the development of the disease in this ethnic population.
文摘转化生长因子-β(transform ing growth factor-,βTGF-β)是一类多功能多肽类生长因子,对细胞增殖分化、细胞外基质产生、血管生成、细胞凋亡及机体免疫系统均起着非常重要的调节作用。体内外实验证实TGF-β及其受体的表达均受到低氧的调节,但这种调节具有明显的组织细胞特异性,而且不同亚型的TGF-β及不同类型的受体对低氧的反应是通过不同的信号分子或转录因子来介导的。
基金supported by the National Natural Science Foundation of China,No.81330042,81620108018(both to SQF),and 81702147(to ZJW)
文摘Bone marrow-derived mesenchymal stem cells differentiate into neurons under the induction of Schwann cells. However, key microRNAs and related pathways for differentiation remain unclear. This study screened and identified differentially expressed microRNAs in bone marrow- derived mesenchymal stem cells induced by Schwann cell-conditioned medium, and explored targets and related pathways involved in their differentiation into neuronal-like cells. Primary bone marrow-derived mesenchymal stem cells were isolated from femoral and tibial bones, while primary Schwann cells were isolated from bilateral saphenous nerves. Bone marrow-derived mesenchymal stem cells were cultured in unconditioned (control group) and Schwann cell-conditioned medium (bone marrow-derived mesenchymal stem cell + Schwann cell group). Neuronal differentiation of bone marrow-derived mesenchymal stem cells induced by Schwann cell-conditioned medium was observed by time-lapse imaging. Upon induction, the morphology of bone marrow-derived mesencaymal stem cells changed into a neural shape with neurites. Results of quantitative reverse transcription-polymerase chain reaction revealed that nestin mRNA expression was upregulated from 1 to 3 days and downregulated from 3 to 7 days in the bone marrow-derived mesenchymal stem cell + Schwann cell group. Compared with the control group, microtubule-associated protein 2 mRNA expression gradually increased from 1 to 7 days in the bone marrow-derived mesenchymal stem cell + Schwann cell group. After 7 days of induction, microRNA analysis iden:ified 83 significantly differentially expressed microRNAs between the two groups. Gene Ontology analysis indicated enrichment of microRNA target genes for neuronal projection development, regulation of axonogenesis, and positive regulation of cell proliferation. Kyoto Encyclopedia of Genes and Genomes pathway analysis demonstrated that Hippo, Wnt, transforming growth factor-beta, and Hedgehog signaling pathv/ays were potentially associated with neural differentiation of bone marrow-derived mesenchymal stem cells. This study, which carried out successful microRNA analysis of neuronal-like cells differentiated from bone marrow-derived mesenchymal stem cells by Schwann cell induction, revealed key microRNAs and pathways involved in neural differentiation of bone marrow-derived mesenchymal stem cells. All protocols were approved by the Animal Ethics Committee of Institute of Radiation Medicine, Chinese Academy of Medical Sciences on March 12, 2017 (approval number: DWLI-20170311).