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SH3结构域在体内对BCR/ABL依赖性白血病发生起作用:在黏附、侵袭和归巢中的作用。

The SH3 domain contributes to BCR/ABL-dependent leukemogenesis in vivo: role in adhesion, invasion, and homing.

作者信息

Skorski T, Nieborowska-Skorska M, Wlodarski P, Wasik M, Trotta R, Kanakaraj P, Salomoni P, Antonyak M, Martinez R, Majewski M, Wong A, Perussia B, Calabretta B

机构信息

Kimmel Cancer Institute, Jefferson Medical College, Philadelphia, PA 19107, USA.

出版信息

Blood. 1998 Jan 15;91(2):406-18.

PMID:9427693
Abstract

To determine the possible role of the BCR/ABL oncoprotein SH3 domain in BCR/ABL-dependent leukemogenesis, we studied the biologic properties of a BCR/ABL SH3 deletion mutant (delta SH3 BCR/ABL) constitutively expressed in murine hematopoietic cells. delta SH3 BCR/ABL was able to activate known BCR/ABL-dependent downstream effector molecules such as RAS, PI-3kinase, MAPK, JNK, MYC, JUN, STATs, and BCL-2. Moreover, expression of delta SH3 BCR/ABL protected 32Dcl3 murine myeloid precursor cells from apoptosis, induced their growth factor-independent proliferation, and resulted in transformation of primary bone marrow cells in vitro. Unexpectedly, leukemic growth from cells expressing delta SH3 BCR/ABL was significantly retarded in SCID mice compared with that of cells expressing the wild-type protein. In vitro and in vivo studies to determine the adhesive and invasive properties of delta SH3 BCR/ABL-expressing cells showed their decreased interaction to collagen IV- and laminin-coated plates and their reduced capacity to invade the stroma and to seed the bone marrow and spleen. The decreased interaction with collagen type IV and laminin was consistent with a reduced expression of alpha 2 integrin by delta SH3 BCR/ABL-transfected 32Dcl3 cells. Moreover, as compared with wild-type BCR/ABL, which localizes primarily in the cytoskeletal/membrane fraction, delta SH3 BCR/ABL was more evenly distributed between the cytoskeleton/membrane and the cytosol compartments. Together, the data indicate that the SH3 domain of BCR/ABL is dispensable for in vitro transformation of hematopoietic cells but is essential for full leukemogenic potential in vivo.

摘要

为了确定BCR/ABL癌蛋白SH3结构域在BCR/ABL依赖性白血病发生中的可能作用,我们研究了在小鼠造血细胞中组成性表达的BCR/ABL SH3缺失突变体(δSH3 BCR/ABL)的生物学特性。δSH3 BCR/ABL能够激活已知的BCR/ABL依赖性下游效应分子,如RAS、PI-3激酶、MAPK、JNK、MYC、JUN、信号转导子和转录激活子(STATs)以及BCL-2。此外,δSH3 BCR/ABL的表达保护32Dcl3小鼠骨髓前体细胞免于凋亡,诱导它们在无生长因子的情况下增殖,并导致原代骨髓细胞在体外发生转化。出乎意料的是,与表达野生型蛋白的细胞相比,表达δSH3 BCR/ABL的细胞在严重联合免疫缺陷(SCID)小鼠中的白血病生长明显延迟。为了确定表达δSH3 BCR/ABL的细胞的黏附性和侵袭性而进行的体外和体内研究表明,它们与胶原IV和层粘连蛋白包被的平板的相互作用减少,侵袭基质以及在骨髓和脾脏中定植的能力降低。与IV型胶原和层粘连蛋白的相互作用减少与δSH3 BCR/ABL转染的32Dcl3细胞中α2整合素表达降低一致。此外,与主要定位于细胞骨架/膜部分的野生型BCR/ABL相比,δSH3 BCR/ABL在细胞骨架/膜和胞质溶胶区室之间分布更均匀。总之,数据表明BCR/ABL的SH3结构域对于造血细胞的体外转化是可有可无的,但对于体内完全的白血病生成潜能是必不可少的。

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