[Objective] The study aimed at cloning and analyzing the insulin-like growth factor-1 (IGF-1) gene from liver of Hubei white swine. [Method] The total RNA was extracted by using Trizol from the liver of Hubei white ...[Objective] The study aimed at cloning and analyzing the insulin-like growth factor-1 (IGF-1) gene from liver of Hubei white swine. [Method] The total RNA was extracted by using Trizol from the liver of Hubei white swine and used as template to amplify IGF-1 gene cDNA by RT-PCR. The cDNA product was cloned into pCRII vector, screened with blue-white colonies, digested with double enzymes and sequenced. [Result] The sequencing result indicated that the IGF-1 gene consisted of 607 nucleotides, containing 5'-untranslated region at nucleotides 1-145, a complete ORF at nucleotides 146-538 encoding 130 amino acids, and 3'-untranslated region at nucleotides 539-607. It shared 100% homology with the porcine IGF-1 gene reported by Muller et al. [Conclusion] The successful cloning and sequencing of the Hubei white swine IGF-1 gene confirmed that IGF-I gene was highly conserved, which provided technical basis for the use of transgenic technology for breeding of Hubei white swine.展开更多
Objective. To explore the role of insulin-like growth factor 1 (IGF-1)gene expression abnormality in neurotrophic causes of diabetic peripheral neurophathy.Methods. Diabetes was induced in Sprague Dawley rats by allox...Objective. To explore the role of insulin-like growth factor 1 (IGF-1)gene expression abnormality in neurotrophic causes of diabetic peripheral neurophathy.Methods. Diabetes was induced in Sprague Dawley rats by alloxan. The parameters were measured as follows: IGF-1 mRNA by reverse transcriptase-polymerase chain reaction (RT-PCR); IGF-1 peptide by enzyme-linked immunosorbent assay (ELISA); electrophysiological parameters of nerves by evoked electromyogram; morphometric evaluation of sciatic nerves under light microscope and transmission electron microscope.Results. During early diabetic stage, IGF-1 mRNA [(0.430±0.031)vs. (0.370±0.016), P <0.01,(0.430 ± 0.031 ) vs. (0.280 ± 0.010) , P <0.001, respectively], IGF - 1 peptide contents [ (38.44 ± 3.60)ng/mgvs. (30.06±2.41) ng/mg, P <0.01, (38.44±3.6) ng/mgvs. (3.71 +2.70) ng/mg, P <0.001,respectively] in sciatic nerve tissue reduced in diabetic rats with hyperglycemia and varied with severity of diabetic state when compared with non-diabetic control rats, and further gradually down-regulated in the diabetic rats with duration of diabetes [IGF-1 mRNA (0. 320 ± 0. 021) ~ (0. 230 + 0. 060); IGF-1 peptide (28.80 ± 3.30) ~(19. 51 + 1.80)ng/mg]. Furthermore, they correlated with nerve functional (sensory nerve conduction velocity:r = 0. 741, P <0. 001; amplitude ofevokedpotential: r = 0. 716, P <0. 001, respectively)andstructuralabnormality (axonal areas r = 0. 81, P < 0. 001 ) of sciatic nerve. No difference was found in the above parameters between diabetic rats with euglycemia and non-diabetic control group.Conclusion. IGF-1 gene expression in tissues was down-regulated from early diabetic stage, and varied with the severity and duration of diabetic state. The decrement in IGF-1 level might contribute to the initiation and development of diabetic neuropathy via autocrine or paracrine pathway.展开更多
The objective of this study was to determine the genotype effects of the bovine insulin-like growth factor Ⅰ (IGF-Ⅰ) and its binding protein 3 (IGFBP3) genes on growth and development traits in beef cows, includ...The objective of this study was to determine the genotype effects of the bovine insulin-like growth factor Ⅰ (IGF-Ⅰ) and its binding protein 3 (IGFBP3) genes on growth and development traits in beef cows, including 130 Chinese Simmental, 42 Nanyang, and 47 Luxi Yellow cattle. Sequence variations in the bovine IGF-Ⅰ and IGFBP3 genes were investigated by single strand conformation polymorphism (SSCP). SSCPs were detected in 6 fragments, which is the 5'-flanking region, the 2nd exon, the 5th exon, and the 5th intron of the IGF-1 gene, and the 2nd exon, the 3rd exon of the 1GFBP3 gene. Two polymorphisms, an A-to-G transition in the 2rid exon of the IGF-Ⅰ gene and a T-to-C transition in the 2rid exon of IGFBP3 gene were detected in 3 breeds. The allele frequencies of 2 polymorphisms were 0.0411 (A), 0.9589 (B), and 0.7237 (A), 0.2763 (B), respectively. These 2 loci were analyzed to associate with body weight, height at withers, body length, heart girth, rump width, and beef production index (BPI) at 0, 6, 12, 24, and 36-month old. The IGFBP3 locus was shown to be associated with rump width, heart girth at 24-month and 36-month. Animals with BB genotype had higher rump width (24.86 ± 0.47) cm at 24-month and (27.50 ± 0.63) em at 36-month. The heart girth was highest for the individuals with BB genotype (171.33 ± 1.84) cm and higher than those with AB genotype (166.68 ± 1.13) cm (P〈 0.05) at 36-month.展开更多
基金Supported by Projects for Transgenic Research (2008ZX08006-002,2008ZX08006-003,2008ZX08010-003,2008ZX08011-004)Hubei Key Laboratory Project (2011ZD127)~~
文摘[Objective] The study aimed at cloning and analyzing the insulin-like growth factor-1 (IGF-1) gene from liver of Hubei white swine. [Method] The total RNA was extracted by using Trizol from the liver of Hubei white swine and used as template to amplify IGF-1 gene cDNA by RT-PCR. The cDNA product was cloned into pCRII vector, screened with blue-white colonies, digested with double enzymes and sequenced. [Result] The sequencing result indicated that the IGF-1 gene consisted of 607 nucleotides, containing 5'-untranslated region at nucleotides 1-145, a complete ORF at nucleotides 146-538 encoding 130 amino acids, and 3'-untranslated region at nucleotides 539-607. It shared 100% homology with the porcine IGF-1 gene reported by Muller et al. [Conclusion] The successful cloning and sequencing of the Hubei white swine IGF-1 gene confirmed that IGF-I gene was highly conserved, which provided technical basis for the use of transgenic technology for breeding of Hubei white swine.
基金This work was supported by the National Natural Sciences Foun-dation of China.This work was originally published in Chinese Journal of Internal Medicine (2001 40(2): 93-7)in Chinese.
文摘Objective. To explore the role of insulin-like growth factor 1 (IGF-1)gene expression abnormality in neurotrophic causes of diabetic peripheral neurophathy.Methods. Diabetes was induced in Sprague Dawley rats by alloxan. The parameters were measured as follows: IGF-1 mRNA by reverse transcriptase-polymerase chain reaction (RT-PCR); IGF-1 peptide by enzyme-linked immunosorbent assay (ELISA); electrophysiological parameters of nerves by evoked electromyogram; morphometric evaluation of sciatic nerves under light microscope and transmission electron microscope.Results. During early diabetic stage, IGF-1 mRNA [(0.430±0.031)vs. (0.370±0.016), P <0.01,(0.430 ± 0.031 ) vs. (0.280 ± 0.010) , P <0.001, respectively], IGF - 1 peptide contents [ (38.44 ± 3.60)ng/mgvs. (30.06±2.41) ng/mg, P <0.01, (38.44±3.6) ng/mgvs. (3.71 +2.70) ng/mg, P <0.001,respectively] in sciatic nerve tissue reduced in diabetic rats with hyperglycemia and varied with severity of diabetic state when compared with non-diabetic control rats, and further gradually down-regulated in the diabetic rats with duration of diabetes [IGF-1 mRNA (0. 320 ± 0. 021) ~ (0. 230 + 0. 060); IGF-1 peptide (28.80 ± 3.30) ~(19. 51 + 1.80)ng/mg]. Furthermore, they correlated with nerve functional (sensory nerve conduction velocity:r = 0. 741, P <0. 001; amplitude ofevokedpotential: r = 0. 716, P <0. 001, respectively)andstructuralabnormality (axonal areas r = 0. 81, P < 0. 001 ) of sciatic nerve. No difference was found in the above parameters between diabetic rats with euglycemia and non-diabetic control group.Conclusion. IGF-1 gene expression in tissues was down-regulated from early diabetic stage, and varied with the severity and duration of diabetic state. The decrement in IGF-1 level might contribute to the initiation and development of diabetic neuropathy via autocrine or paracrine pathway.
基金funded by the National Key Technology R&D Program of the China (2006BAD01A10,2006BAD14B07, 2006BAD04A16)the National High Technology Research and Development Program of China (2006AA10Z197)
文摘The objective of this study was to determine the genotype effects of the bovine insulin-like growth factor Ⅰ (IGF-Ⅰ) and its binding protein 3 (IGFBP3) genes on growth and development traits in beef cows, including 130 Chinese Simmental, 42 Nanyang, and 47 Luxi Yellow cattle. Sequence variations in the bovine IGF-Ⅰ and IGFBP3 genes were investigated by single strand conformation polymorphism (SSCP). SSCPs were detected in 6 fragments, which is the 5'-flanking region, the 2nd exon, the 5th exon, and the 5th intron of the IGF-1 gene, and the 2nd exon, the 3rd exon of the 1GFBP3 gene. Two polymorphisms, an A-to-G transition in the 2rid exon of the IGF-Ⅰ gene and a T-to-C transition in the 2rid exon of IGFBP3 gene were detected in 3 breeds. The allele frequencies of 2 polymorphisms were 0.0411 (A), 0.9589 (B), and 0.7237 (A), 0.2763 (B), respectively. These 2 loci were analyzed to associate with body weight, height at withers, body length, heart girth, rump width, and beef production index (BPI) at 0, 6, 12, 24, and 36-month old. The IGFBP3 locus was shown to be associated with rump width, heart girth at 24-month and 36-month. Animals with BB genotype had higher rump width (24.86 ± 0.47) cm at 24-month and (27.50 ± 0.63) em at 36-month. The heart girth was highest for the individuals with BB genotype (171.33 ± 1.84) cm and higher than those with AB genotype (166.68 ± 1.13) cm (P〈 0.05) at 36-month.