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NPs can be made from many different polymer types including naturalNPs can be made from many different polymer types including natural or synthetic polymers such as poly-d,l-lactide-co-glycolide (PLGA), polylactic acid (PLA), poly--caprolactone (PCL), chitosan, gelatin, poly-alkyl-cyano-acrylates (PAC), gamma polyglutamic acid (-PGA), hyaluronan [or hyaluronic [34,35,39] acid (HA)] . However
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Locks of larger networks. For every single module we constructed a mathematical model to calculate CV for interacting proteins transcribed from the identical and different operons (hereafter referred to as cotrans.Locks of larger networks. For each and every module we constructed a mathematical model to calculate CV for interacting proteins transcribed in the same and unique operons (hereafter ref
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NPs can be made from many different polymer types including naturalNPs can be made from many different polymer types including natural or synthetic polymers such as poly-d,l-lactide-co-glycolide (PLGA), polylactic acid (PLA), poly--caprolactone (PCL), chitosan, gelatin, poly-alkyl-cyano-acrylates (PAC), gamma polyglutamic acid (-PGA), hyaluronan [or hyaluronic [34,35,39] acid (HA)] . However
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Ro-fibrils. This was suggested to be crucial for HA mineral nucleation [59]. Self-assembly is thus another way that the IDP proteins can regulate the process of biomineralization.Author Manuscript Author Manuscript Author Manuscript Author Manuscript3. Potential Mechanisms of IDP Action: BiomineralizationThere must be precise reasons why so many IDP proteins are associated with mineralization. It
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Pitope-tagged Roc1b under the control of the Roc1b promoter were able to rescue the male sterile phenotype (Fig. 5A). Six different BNAR lines rescued the male sterility defect, five of them to the level of the control Rob1b transgenes (Fig. 5A). The BNAR chimeric proteins were expressed from the Roc1b promoter at levels comparable to normal Roc1b (Figure 5b). Because BNAR binds to Cul3, we conclu
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Ly differ from those observed with interactions with calcium phosphate mineral [113]. In vitro studies with amelogenin reported a disorder-to-order transition during the self-assembly process. The amelogenin molecules at pH 7.2 spontaneously self-assemble into oligomers and nanospheres. These subsequently bind together to form micro-ribbons [58]. Beniash et al suggest that this amelogenin self-ass
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NPs can be made from many different polymer types including naturalNPs can be made from many different polymer types including natural or synthetic polymers such as poly-d,l-lactide-co-glycolide (PLGA), polylactic acid (PLA), poly--caprolactone (PCL), chitosan, gelatin, poly-alkyl-cyano-acrylates (PAC), gamma polyglutamic acid (-PGA), hyaluronan [or hyaluronic [34,35,39] acid (HA)] . However
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