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从 ALL 到髓系和 NK 恶性肿瘤:将“ASNS 低表达”用于 L-天冬酰胺酶重定位和联合治疗的实践化

英文原题:From ALL to Myeloid and NK Malignancies: Operationalizing "ASNS-Low" for L-Asparaginase Repurposing and Combination Therapy.

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From ALL to Myeloid and NK Malignancies: Operationalizing "ASNS-Low" for L-Asparaginase Repurposing and Combination Therapy.

PubMed 2026/05/27(内容时间) Biomolecules Q1 · IF 5.6(JCR 2025)

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中文摘要

L-天冬酰胺酶(ASNase)是一种典型的氨基酸耗竭疗法,可诱导全身性天冬酰胺饥饿,至今仍是急性淋巴细胞白血病(ALL)的基石治疗。氨基酸代谢是血液系统恶性肿瘤的一个基本治疗脆弱点,然而对全身性天冬酰胺耗竭应答的决定因素仍未完全明确。天冬酰胺合成酶(ASNS)调控细胞内天冬酰胺生物合成,并作为嵌入适应性营养感知通路中的应激响应性代谢节点发挥作用。新兴的转录组学和蛋白质组学证据表明,ASNS表达降低在生物学上不同的急性髓系白血病(AML)亚群中富集,尤其是那些以未成熟分化状态和与代谢脆弱性相关的细胞遗传学特征为特点的亚群,包括inv(16)和7号染色体相关疾病。

自然杀伤/T细胞(NK/T细胞)肿瘤的临床经验提供了原理验证,即酶促天冬酰胺耗竭可在本质上依赖细胞外氨基酸供应的肿瘤中实现持久治疗疗效,从而确立结外NK/T细胞淋巴瘤(ENKTL)为超越急性淋巴细胞白血病的机制上一致的锚定适应症。整合性分子分析进一步表明,ASNS缺陷发挥的是许可性而非决定性生物标志物的作用,治疗应答受谱系特异性代谢布线、适应性应激信号和微环境营养缓冲的调节。蛋白质锚定诊断平台的进展,包括细胞内流式细胞术和定量蛋白质组学,现已使ASNS作为临床可操作的分层标志物得以实际应用。机制研究还提示,氨基酸耗竭可能与凋亡信号网络相互作用,支持与BCL-2抑制剂等靶向药物进行合理的联合策略。

总体而言,这些发现支持一个概念框架,即ASNS低表达定义了一种情境依赖性的代谢脆弱性,而非一种统一的疾病范围预测因子,这凸显了开展前瞻性生物标志物富集临床试验的必要性,以确立ASNS指导的氨基酸耗竭作为跨异质性髓系和淋系恶性肿瘤的精准肿瘤学策略。

展开英文摘要原文

L-asparaginase (ASNase) is a paradigmatic amino-acid depletion therapy that induces systemic asparagine starvation and remains foundational in acute lymphoblastic leukemia (ALL). Amino-acid metabolism constitutes a fundamental therapeutic vulnerability in hematologic malignancies, yet the determinants of response to systemic asparagine depletion remain incompletely defined. Asparagine synthetase (ASNS) regulates intracellular asparagine biosynthesis and functions as a stress-responsive metabolic node embedded within adaptive nutrient-sensing pathways. Emerging transcriptomic and proteomic evidence demonstrates that reduced ASNS expression is enriched in biologically distinct subsets of acute myeloid leukemia (AML), particularly those characterized by immature differentiation states and cytogenetic features associated with metabolic fragility, including inv(16) and chromosome 7-associated disease. Clinical experience in natural killer/T-cell (NK/T-cell) neoplasms provides proof-of-principle that enzymatic asparagine depletion can achieve durable therapeutic efficacy in tumors intrinsically dependent on extracellular amino-acid supply, establishing extranodal NK/T-cell lymphoma (ENKTL) as a mechanistically aligned anchor indication beyond acute lymphoblastic leukemia.

Integrative molecular analyses further indicate that ASNS deficiency functions as a permissive rather than deterministic biomarker, with therapeutic response modulated by lineage-specific metabolic wiring, adaptive stress signaling, and microenvironmental nutrient buffering. Advances in protein-anchored diagnostic platforms, including intracellular flow cytometry and quantitative proteomics, now enable operationalization of ASNS as a clinically actionable stratification marker.

Mechanistic studies also suggest that amino-acid depletion may interact with apoptotic signaling networks, supporting rational combination strategies with targeted agents such as BCL-2 inhibitors.

Collectively, these findings support a conceptual framework in which ASNS-low defines a context-dependent metabolic vulnerability rather than a uniform disease-wide predictor, underscoring the need for prospective biomarker-enriched clinical trials to establish ASNS-guided amino-acid depletion as a precision oncology strategy across heterogeneous myeloid and lymphoid malignancies.

论文信息

作者
Kitoh T
单位
Laboratory of Pediatrics, School of Pharmacy, Aichi Gakuin University, Nagoya 464-8650, Japan.Japan
文献类型
综述
期刊
Biomolecules2026 May 27
原文标识
PubMed 42352259 · DOI 10.3390/biom16060792