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粒细胞集落刺激因子受体中一个新的信号转导及转录激活因子3招募与激活基序的鉴定。

Identification of a novel Stat3 recruitment and activation motif within the granulocyte colony-stimulating factor receptor.

作者信息

Chakraborty A, Dyer K F, Cascio M, Mietzner T A, Tweardy D J

机构信息

Division of Infectious Diseases, the Department of Medicine, University of Pittsburgh School of Medicine and the University of Pittsburgh Cancer Institute, 200 Lothrop St, Pittsburgh,

出版信息

Blood. 1999 Jan 1;93(1):15-24.

PMID:9864141
Abstract

Stat3 is essential for early embryonic development and for myeloid differentiation induced by the cytokines granulocyte colony-stimulating factor (G-CSF) and interleukin-6 (IL-6). Two isoforms of Stat3 have been identified, (p92) and beta (p83), which have distinct transcriptional and biological functions. Activation of both Stat3 and Stat3beta requires the distal cytoplasmic domain of the G-CSFR, which contains four Tyr at positions 704, 729, 744, and 764. The studies reported here were undertaken to determine which, if any, of these tyrosine residues participated in Stat3/beta recruitment and activation. We showed that Stat3 and Stat3beta were affinity purified using phosphopeptides containing Y704 and Y744 but not by nonphosphorylated peptide analogues or by phosphopeptides containing Y729 and Y764. Complementary results were obtained in studies examining the ability of these peptides to destabilize and inhibit DNA binding of activated Stat3. Both Y704 and Y744 contributed to optimal activation of Stat3/beta in M1 murine myeloid leukemia cells containing wild-type and Y-to-F mutant G-CSFR constructs. Carboxy-terminal to Y704 at the +3 position is Gln; YXXQ represents a consensus Stat3 recruitment and activation motif. Y744 is followed at the +3 position by Cys (C); YXXC, represents a novel motif implicated in the recruitment and activation of Stat3. Modeling of the SH2 domain of Stat3 based on homologous SH2 domains of known structure revealed polar residues whose side chains contact the +3 position. This substitution may confer specificity for the Y704- and Y744-based ligands by allowing H-bond formation between the binding surface and the Gln or Cys found at the respective +3 position.

摘要

信号转导和转录激活因子3(Stat3)对于早期胚胎发育以及由细胞因子粒细胞集落刺激因子(G-CSF)和白细胞介素-6(IL-6)诱导的髓系分化至关重要。已鉴定出Stat3的两种异构体,α(p92)和β(p83),它们具有不同的转录和生物学功能。Stat3和Stat3β的激活都需要G-CSFR的远端胞质结构域,该结构域在第704、729、744和764位含有四个酪氨酸(Tyr)。本文报道的研究旨在确定这些酪氨酸残基中哪些(如果有的话)参与了Stat3/β的募集和激活。我们发现,使用含有Y704和Y744的磷酸肽可亲和纯化Stat3和Stat3β,而使用非磷酸化肽类似物或含有Y729和Y764的磷酸肽则不能。在研究这些肽破坏和抑制活化Stat3的DNA结合能力的实验中获得了互补的结果。在含有野生型和Y到F突变型G-CSFR构建体的M1小鼠髓系白血病细胞中,Y704和Y744都有助于Stat3/β的最佳激活。Y704的羧基末端第+3位是谷氨酰胺(Gln);YXXQ代表一个公认的Stat3募集和激活基序。Y744之后第+3位是半胱氨酸(C);YXXC代表一个与Stat3的募集和激活有关的新基序。基于已知结构的同源SH2结构域对Stat3的SH2结构域进行建模,揭示了其侧链与+3位接触的极性残基。这种取代可能通过允许结合表面与相应+3位的Gln或Cys之间形成氢键,赋予基于Y704和Y744的配体特异性。

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