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1.
Macromol Mater Eng ; 306(1)2021 Jan.
Article in English | MEDLINE | ID: mdl-34539237

ABSTRACT

In order to better understand the relationship between Flagelliform (Flag) spider silk molecular structural organization and the mechanisms of fiber assembly, it was designed and produced the Nephilengys cruentata Flag spidroin analogue rNcFlag2222. The recombinant proteins are composed by the elastic repetitive glycine-rich motifs (GPGGX/GGX) and the spacer region, rich in hydrophilic charged amino acids, present at the native silk spidroin. Using different approaches for nanomolecular protein analysis, the structural data of rNcFlag2222 recombinant proteins were compared in its fibrillar and in its fully solvated states. Based on the results was possible to identify the molecular structural dynamics of NcFlag2222 prior to and after fiber formation. Overal rNcFlag2222 shows a mixture of semiflexible and rigid conformations, characterized mostly by the presence of PPII, ß-turn and ß-sheet. These results agree with previous studies and bring insights about the molecular mechanisms that might driven Flag silk fibers assembly and elastomeric behavior.

2.
Microb Biotechnol ; 6(6): 651-63, 2013 Nov.
Article in English | MEDLINE | ID: mdl-24119078

ABSTRACT

Spider dragline silk is considered to be the toughest biopolymer on Earth due to an extraordinary combination of strength and elasticity. Moreover, silks are biocompatible and biodegradable protein-based materials. Recent advances in genetic engineering make it possible to produce recombinant silks in heterologous hosts, opening up opportunities for large-scale production of recombinant silks for various biomedical and material science applications. We review the current strategies to produce recombinant spider silks.


Subject(s)
Arthropod Proteins/metabolism , DNA, Recombinant/genetics , Silk/metabolism , Animals , Arthropod Proteins/genetics , Biopolymers/biosynthesis , Biopolymers/genetics , Biotechnology , DNA, Recombinant/metabolism , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Silk/chemistry , Silk/genetics
3.
Mol Reprod Dev ; 79(2): 77-84, 2012 Feb.
Article in English | MEDLINE | ID: mdl-22128039

ABSTRACT

The objectives of this study were to investigate the effect of sexing by flow cytometry on the methylation patterns of the IGF2 and IGF2R genes. Frozen-thawed, unsorted, and sex-sorted sperm samples from four Nellore bulls were used. Each ejaculate was separated into three fractions: non-sexed (NS), sexed for X-sperm (SX), and sexed for Y-sperm (SY). Sperm were isolated from the extender, cryoprotectant, and other cell types by centrifugation on a 40:70% Percoll gradient, and sperm pellets were used for genomic DNA isolation. DNA was used for analyses of the methylation patterns by bisulfite sequencing. Methylation status of the IGF2 and IGF2R genes were evaluated by sequencing 195 and 147 individual clones, respectively. No global differences in DNA methylation were found between NS, SX, and SY groups for the IGF2 (P = 0.09) or IGF2R genes (P = 0.38). Very specific methylation patterns were observed in the 25th and 26th CpG sites in the IGF2R gene. representing higher methylation in NS than in the SX and SY groups compared with the other CpG sites. Further, individual variation in methylation patterns was found among bulls. In conclusion, the sex-sorting procedure by flow cytometry did not affect the overall DNA methylation patterns of the IGF2 and IGF2R genes, although individual variation in their methylation patterns among bulls was observed.


Subject(s)
DNA Methylation , Flow Cytometry , Insulin-Like Growth Factor II/genetics , Receptor, IGF Type 2/genetics , Sex Preselection/methods , Spermatozoa/metabolism , Animals , Cattle/genetics , Cattle/metabolism , DNA Methylation/physiology , Flow Cytometry/methods , Flow Cytometry/veterinary , Gene Expression Profiling , Gene Expression Regulation , Individuality , Insulin-Like Growth Factor II/metabolism , Male , Receptor, IGF Type 2/metabolism , Sex Preselection/veterinary
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