The disease-linked R336C mutation in cystathionine β-synthase disrupts communication with the PLP cofactor, yet maintains the enzyme's overall structural integrity
المؤلف | Conter, Carolina |
المؤلف | Núñez-Franco, Reyes |
المؤلف | Al-Sadeq, Duaa Walid |
المؤلف | Fernández-Rodríguez, Carmen |
المؤلف | Goikoetxea-Usandizaga, Naroa |
المؤلف | Nasrallah, Gheyath K. |
المؤلف | Nomikos, Michail |
المؤلف | Martinez-Chantar, Maria Luz |
المؤلف | Astegno, Alessandra |
المؤلف | Jiménez-Osés, Gonzalo |
المؤلف | Martínez-Cruz, Luis Alfonso |
تاريخ الإتاحة | 2025-06-10T07:39:25Z |
تاريخ النشر | 2025-05-06 |
اسم المنشور | FEBS Journal |
المعرّف | http://dx.doi.org/10.1111/febs.70116 |
الاقتباس | Conter, C., Núñez‐Franco, R., Al‐Sadeq, D. W., Fernández‐Rodríguez, C., Goikoetxea‐Usandizaga, N., Nasrallah, G. K., ... & Martínez‐Cruz, L. A. (2025). The disease‐linked R336C mutation in cystathionine β‐synthase disrupts communication with the PLP cofactor, yet maintains the enzyme's overall structural integrity. The FEBS Journal. |
الرقم المعياري الدولي للكتاب | 1742-464X |
الملخص | Cystathionine β-synthase (CBS) is a pyridoxal-phosphate (PLP)-dependent enzyme essential for the reverse transsulfuration pathway, where homocysteine and serine combine to form cystathionine, the immediate precursor of cysteine. Mutations in the CBS gene cause homocystinuria, a disorder associated with intellectual disability, multisystem complications, and reduced life expectancy. The CBS p.R336C mutation, linked to severe pyridoxine non-responsiveness, results in reduced enzyme activity, previously attributed to protein instability and weakened substrate and PLP binding. To clarify the effects of the pathological R336C mutation, we performed biochemical, biophysical, and crystallographic analyses, as well as molecular dynamics simulations. Our findings show that the R336C mutation minimally impacts the structural environment around residue 336, does not cause enzyme misfolding, and does not impair the binding of PLP or the allosteric activator S-adenosylmethionine (AdoMet) binding. Instead, the mutation induces subtle reorientations in nearby hydrophobic residues, including F185 and Y381, altering intramolecular contacts that perturb the interaction between asparagine 149 and the O3 oxygen of PLP. This alteration is known to potentially shift the tautomeric equilibrium of the PLP Schiff base from its catalytically active ketoenamine form to the inactive enolimine form, which aligns with the reduced activity of the R336C variant. Additionally, the R336C mutation disrupts intermolecular contacts between the catalytic core and Bateman module, altering the Bateman module's intrinsic mobility in the enzyme's basal state and potentially affecting the cavity opening required for catalysis. Importantly, the R336C variant retains the native enzyme's ability to assemble into polymeric chains in crystals, preserving its filament formation capacity. |
راعي المشروع | This research was supported by Spanish Ministerio de Ciencia e Innovaci\u00F3n (MICINN), Grants No PID2019\u2010109055RB\u2010I00 and PID2022\u2010141748OB\u2010I00, to LAM\u2010C; PID2021\u2010125946OB\u2010I00 to GJ\u2010O; Italian Ministry of University and Research (MUR)\u2010PRIN 2022 grant No. 20224BYR59 to AA; MICINN: PID2020\u2010117116RB\u2010I00 integrado en el Plan Estatal de Investigaci\u00F3n Cient\u00EDfica y T\u00E9cnica e Innovaci\u00F3n, cofinanciado con Fondos FEDER (for MLM\u2010C); Ministerio de Ciencia e Innovaci\u00F3n, Programa Retos\u2010Colaboraci\u00F3n RTC2019\u2010007125\u20101 (for MLM\u2010C); Instituto de Salud Carlos III, Proyectos Investigaci\u00F3n en Salud DTS20/00138 (for MLM\u2010C); La Caixa Scientific Foundation (HR17\u201000601) (for MLM\u2010C); La Caixa Consortium (for MLM\u2010C); Ayudas Fundaci\u00F3n Cient\u00EDfica AECC para proyectos coordinados (IGTP\u2010AECC_2022\u2010042) (for MLM\u2010C); Transferencia tecnol\u00F3gica 2022 (6/12/TT/2022/00001) (for MLM\u2010C); Desarrollo Tecnol\u00F3gico en Salud (DTS20/00138) (for MLM\u2010C); Ayudas a proyectos de investigaci\u00F3n y desarrollo en salud (2023333041) (for MLM\u2010C); Caixa Impulse Innovation 2023 (CI23\u201020155) (for MLM\u2010C) to MLM\u2010C; GSRA grant (GSRA6\u20101\u20100413\u201019013) to DWA\u2010S. We also thank MINECO for the Severo Ochoa Excellence Accreditation (CEX2021\u2010001136\u2010S). |
اللغة | en |
الناشر | John Wiley & Sons |
الموضوع | crystallography cystathionine β-synthase homocystinuria hydrogen sulfide molecular dynamics pyridoxal-5′-phosphate |
النوع | Article |
ESSN | 1742-4658 |
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