Damle Rajendra N, Temburni Sonal, Calissano Carlo, Yancopoulos Sophia, Banapour Taraneh, Sison Cristina, Allen Steven L, Rai Kanti R, Chiorazzi Nicholas
Laboratory of Experimental Immunology, The Feinstein Institute for Medical Research, North Shore-Long Island Jewish (LIJ) Health System, 350 Community Drive, Manhasset, NY 11030, USA.
Blood. 2007 Nov 1;110(9):3352-9. doi: 10.1182/blood-2007-04-083832. Epub 2007 Aug 7.
Chronic lymphocytic leukemia (CLL) cells are thought to have diminished cell-cycling capacity, a view challenged by their phenotypic resemblance to activated human B lymphocytes. The present study addresses the cell-cycling status of CLL cells, focusing on those leukemic cells expressing CD38, a molecule involved in signaling and activation that also serves as a prognostic marker in this disease. CD38(+) and CD38(-) members of individual CLL clones were analyzed for coexpression of molecules associated with cellular activation (CD27, CD62L, and CD69), cell-cycle entry (Ki-67), signaling (ZAP-70), and protection from apoptosis (telomerase and Bcl-2). Regardless of the size of the CD38(+) fraction within a CLL clone, CD38(+) subclones are markedly enriched for expression of Ki-67, ZAP-70, human telomerase reverse transcriptase, and telomerase activity. Although the percentage of cells (approximately 2%) entering the cell cycle as defined by Ki-67 expression is small, the absolute number within a clone can be sizeable and is contained primarily within the CD38(+) fraction. Despite these activation/proliferation differences, both CD38(+) and CD38(-) fractions have similar telomere lengths, suggesting that CD38 expression is dynamic and transient. These findings may help explain why high percentages of CD38(+) cells within clones are associated with poor clinical outcome.
慢性淋巴细胞白血病(CLL)细胞被认为细胞周期循环能力减弱,但其与活化的人类B淋巴细胞在表型上的相似性对这一观点提出了挑战。本研究探讨了CLL细胞的细胞周期循环状态,重点关注那些表达CD38的白血病细胞,CD38是一种参与信号传导和活化的分子,也是该疾病的一个预后标志物。分析了单个CLL克隆的CD38(+)和CD38(-)成员与细胞活化相关分子(CD27、CD62L和CD69)、细胞周期进入(Ki-67)、信号传导(ZAP-70)以及抗凋亡(端粒酶和Bcl-2)的共表达情况。无论CLL克隆中CD38(+)部分的大小如何,CD38(+)亚克隆中Ki-67、ZAP-70、人类端粒酶逆转录酶和端粒酶活性的表达均显著富集。尽管根据Ki-67表达定义进入细胞周期的细胞百分比(约2%)很小,但克隆内的绝对数量可能相当可观,且主要存在于CD38(+)部分。尽管存在这些活化/增殖差异,但CD38(+)和CD38(-)部分的端粒长度相似,这表明CD38的表达是动态且短暂的。这些发现可能有助于解释为什么克隆内高百分比的CD38(+)细胞与不良临床结果相关。