首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Identification, design and synthesis of tubulin-derived peptides as novel hyaluronan mimetic ligands for the receptor for hyaluronan-mediated motility (RHAMM/HMMR)
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Identification, design and synthesis of tubulin-derived peptides as novel hyaluronan mimetic ligands for the receptor for hyaluronan-mediated motility (RHAMM/HMMR)

机译:鉴定,设计和合成微管蛋白衍生肽,作为透明质酸介导的运动(RHAMM / HMMR)受体的新型透明质酸模拟配体

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摘要

Fragments of the extracellular matrix component hyaluronan (HA) promote tissue inflammation, fibrosis and tumor progression. HA fragments act through HA receptors including CD44, LYVE1, TLR2, 4 and the receptor for hyaluronan mediated motility (RHAMM/HMMR). RHAMM is a multifunctional protein with both intracellular and extracellular roles in cell motility and proliferation. Extracellular RHAMM binds directly to HA fragments while intracellular RHAMM binds directly to ERK1 and tubulin. Both HA and regions of tubulin (s-tubulin) are anionic and bind to basic amino acid-rich regions in partner proteins, such as in HA and tubulin binding regions of RHAMM. We used this as a rationale for developing bioinformatics and SPR (surface plasmon resonance) based screening to identify high affinity anionic RHAMM peptide ligands. A library of 12-mer peptides was prepared based on the carboxyl terminal tail sequence of s-tubulin isoforms and assayed for their ability to bind to the HA/tubulin binding region of recombinant RHAMM using SPR. This approach resulted in the isolation of three 12-mer peptides with nanomolar affinity for RHAMM. These peptides bound selectively to RHAMM but not to CD44 or TLR2,4 and blocked RHAMM: HA interactions. Furthermore, fluorescein-peptide uptake by PC3MLN4 prostate cancer cells was blocked by RHAMM mAb but not by CD44 mAb. These peptides also reduced the ability of prostate cancer cells to degrade collagen type I. The selectivity of these novel HA peptide mimics for RHAMM suggest their potential for development as HA mimetic imaging and therapeutic agents for HA-promoted disease.
机译:细胞外基质成分透明质酸(HA)的片段促进组织炎症,纤维化和肿瘤进展。 HA片段通过HA受体起作用,包括CD44,LYVE1,TLR2、4和透明质酸介导的运动受体(RHAMM / HMMR)。 RHAMM是一种多功能蛋白,在细胞运动和增殖中具有细胞内和细胞外作用。细胞外RHAMM直接结合HA片段,而细胞内RHAMM直接结合ERK1和微管蛋白。 HA和微管蛋白(s-微管蛋白)区域都是阴离子的,并与伴侣蛋白中的富含碱性氨基酸的区域结合,例如在RHAMM的HA和微管蛋白结合区域中。我们以此为基础开发生物信息学和基于SPR(表面等离子体共振)的筛选方法,以鉴定高亲和力阴离子RHAMM肽配体。基于S-微管蛋白同工型的羧基末端尾序列制备12聚体的肽文库,并使用SPR测定其结合重组RHAMM的HA /微管蛋白结合区的能力。这种方法导致分离出三个对RHAMM具有纳摩尔摩尔亲和力的12-mer肽。这些肽选择性结合RHAMM,但不结合CD44或TLR2,4,并阻止RHAMM:HA相互作用。此外,RHAMM mAb阻止PC3MLN4前列腺癌细胞摄取荧光素肽,但CD44 mAb阻止。这些肽还降低了前列腺癌细胞降解I型胶原的能力。这些新型HA肽模拟物对RHAMM的选择性表明它们具有发展为HA模拟成像和HA促进疾病的治疗剂的潜力。

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