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Syntaxin-6 SNARE Involvement in Secretory and Endocytic Pathways of Cultured Pancreatic β-Cells

机译:Syntaxin-6 SNARE参与培养的胰腺β细胞的分泌和内吞途径。

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In pancreatic β-cells, the syntaxin 6 (Syn6) soluble N -ethylmaleimide-sensitive factor attachment protein receptor is distributed in the trans -Golgi network (TGN) (with spillover into immature secretory granules) and endosomes. A possible Syn6 requirement has been suggested in secretory granule biogenesis, but the role of Syn6 in live regulated secretory cells remains unexplored. We have created an ecdysone-inducible gene expression system in the INS-1 β-cell line and find that induced expression of a membrane-anchorless, cytosolic Syn6 (called Syn6t), but not full-length Syn6, causes a prominent defect in endosomal delivery to lysosomes, and the TGN, in these cells. The defect occurs downstream of the endosomal branchpoint involved in transferrin recycling, and upstream of the steady-state distribution of mannose 6-phosphate receptors. By contrast, neither acquisition of stimulus competence nor the ultimate size of β-granules is affected. Biosynthetic effects of dominant-interfering Syn6 seem limited to slowed intragranular processing to insulin (achieving normal levels within 2 h) and minor perturbation of sorting of newly synthesized lysosomal proenzymes. We conclude that expression of the Syn6t mutant slows a rate-limiting step in endosomal maturation but provides only modest and potentially indirect interference with regulated and constitutive secretory pathways, and in TGN sorting of lysosomal enzymes.
机译:在胰腺β细胞中,语法素6(Syn6)可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体分布在反式-高尔基体网络(TGN)(溢出到未成熟的分泌颗粒中)和内体中。已经有人提出分泌颗粒生物发生中可能存在Syn6的需求,但仍未探索Syn6在活的调节性分泌细胞中的作用。我们在INS-1β细胞系中创建了蜕皮激素诱导的基因表达系统,发现诱导表达的无膜,胞质Syn6(称为Syn6t)而非全长Syn6引起的内体显着缺陷传递到这些细胞中的溶酶体和TGN。该缺陷发生在参与运铁蛋白再循环的内体分支点的下游,以及甘露糖6-磷酸受体稳态分布的上游。相反,既不影响刺激能力的获得,也不影响β颗粒的最终大小。显性干扰Syn6的生物合成作用似乎仅限于减慢胰岛素内的颗粒内加工(在2小时内达到正常水平)和对新合成的溶酶体酶的分类产生轻微扰动。我们得出的结论是,Syn6t突变体的表达减慢了内体成熟中的限速步骤,但仅对调节和组成型分泌途径以及溶酶体酶的TGN分选提供了适度和潜在的间接干扰。

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